default search action
Yoshinari Awaji
Person information
Refine list
refinements active!
zoomed in on ?? of ?? records
view refined list in
export refined list as
2020 – today
- 2024
- [j20]Sugang Xu, Kiyo Ishii, Noboru Yoshikane, Subhadeep Sahoo, Sifat Ferdousi, Masaki Shiraiwa, Yusuke Hirota, Takehiro Tsuritani, Massimo Tornatore, Yoshinari Awaji, Shu Namiki, Biswanath Mukherjee:
Resilience enhancement in open network-cloud ecosystems through disaggregation and cooperation [Invited]. J. Opt. Commun. Netw. 16(2): 105 (2024) - [j19]Sugang Xu, Subhadeep Sahoo, Sifat Ferdousi, Noboru Yoshikane, Masaki Shiraiwa, Yusuke Hirota, Massimo Tornatore, Takehiro Tsuritani, Yoshinari Awaji, Biswanath Mukherjee:
Scheme of carrier cooperation with coordinated scheduling for faster and lower-cost failure/disaster recovery. J. Opt. Commun. Netw. 16(5): 45- (2024) - [c117]Subhadeep Sahoo, Sifat Ferdousi, Sugang Xu, Yusuke Hirota, Massimo Tornatore, Yoshinari Awaji, Biswanath Mukherjee:
DC-Carrier Cooperation for Rapid Restoration against PNE-Node Failure in Optical Networks. OFC 2024: 1-3 - [c116]Sugang Xu, Subhadeep Sahoo, Noboru Yoshikane, Sifat Ferdousi, Masaki Shiraiwa, Yusuke Hirota, Takehiro Tsuritani, Massimo Tornatore, Yoshinari Awaji, Biswanath Mukherjee:
A Distributed-Ledger-based Multi-Entity Cooperation Platform for Network-Cloud Recovery. ONDM 2024: 1-6 - 2023
- [j18]Giap Le, Sifat Ferdousi, Andrea Marotta, Sugang Xu, Yusuke Hirota, Yoshinari Awaji, S. Sedef Savas, Massimo Tornatore, Biswanath Mukherjee:
Reliable Provisioning With Degraded Service Using Multipath Routing From Multiple Data Centers in Optical Metro Networks. IEEE Trans. Netw. Serv. Manag. 20(3): 3334-3347 (2023) - [c115]Benjamin J. Puttnam, Ruben S. Luis, Georg Rademacher, Yoshinari Awaji, Hideaki Furukawa:
High Data-Rate and Wideband transmission in Single and Multi-Core Fibers. ICTON 2023: 1-4 - [c114]Sugang Xu, Kiyo Ishii, Noboru Yoshikane, Subhadeep Sahoo, Sifat Ferdousi, Masaki Shiraiwa, Yusuke Hirota, Takehiro Tsuritani, Massimo Tornatore, Yoshinari Awaji, Shu Namiki, Biswanath Mukherjee:
Enhancement of Network-Cloud Ecosystem Resilience with Openness Disaggregation and Cooperation [Invited]. OFC 2023: 1-3 - [c113]Yuki Yoshida, Kazunobu Kojima, Masaki Shiraiwa, Atsushi Kanno, Akira Hirano, Yosuke Nagasawa, Masamichi Ippommatsu, Naokatsu Yamamoto, Shigefusa Chichibu, Yoshinari Awaji:
Gbps-Class Solar-Blind WDM Optical Wireless Communication By (264, 274, 282)-nm Deep-UV LEDs and CsTe Photomultiplier Tube. OFC 2023: 1-3 - [c112]Benjamin J. Puttnam, Ruben S. Luis, Georg Rademacher, Yoshinari Awaji, Hideaki Furukawa:
Wideband Transmission in Low Core-Count Multi-Core Fibers. ONDM 2023: 1-3 - [c111]Sugang Xu, Subhadeep Sahoo, Sifat Ferdousi, Masaki Shiraiwa, Yusuke Hirota, Massimo Tornatore, Yoshinari Awaji, Biswanath Mukherjee:
A Novel Strategy of Carrier Cooperation with Coordinated Scheduling for Swift Failure/Disaster Recovery. ONDM 2023: 1-6 - 2022
- [j17]Francesco Musumeci, Virajit Garbhapu Venkata, Yusuke Hirota, Yoshinari Awaji, Sugang Xu, Masaki Shiraiwa, Biswanath Mukherjee, Massimo Tornatore:
Domain adaptation and transfer learning for failure detection and failure-cause identification in optical networks across different lightpaths [Invited]. JOCN 14(2): A91-A100 (2022) - [j16]Andrea Marotta, Dajana Cassioli, Massimo Tornatore, Yusuke Hirota, Yoshinari Awaji, Biswanath Mukherjee:
Multilayer protection-at-lightpath for reliable slicing with isolation in optical metro-aggregation networks. JOCN 14(4): 289-302 (2022) - [c110]Subhadeep Sahoo, Sugang Xu, Sifat Ferdousi, Yusuke Hirota, Massimo Tornatore, Yoshinari Awaji, Biswanath Mukherjee:
Strategic Cooperation among Datacenter Providers and Optical-Network Carriers for Disaster Recovery. GLOBECOM 2022: 2151-2156 - [c109]Ruben S. Luis, Benjamin J. Puttnam, Georg Rademacher, Yoshinari Awaji, Hideaki Furukawa:
372 Tb/s Unrepeatered 213 km Transmission Over a 125 µm Cladding Diameter, 4-Core MCF. OFC 2022: 1-3 - [c108]Benjamin J. Puttnam, Ruben S. Luís, Georg Rademacher, Yoshinari Awaji, Hideaki Furukawa:
Investigation of Long-Haul S-, C- + L-Band Transmission. OFC 2022: 1-3 - [c107]Georg Rademacher, Ruben S. Luis, Benjamin J. Puttnam, Juan Carlos Alvarado-Zacarias, Rodrigo Amezcua Correa, Kazuhiko Aikawa, Yoshinari Awaji, Hideaki Furukawa:
Investigation of Wideband Distributed Raman Amplification in a Few-Mode Fiber Link. OFC 2022: 1-3 - [c106]Subhadeep Sahoo, Sugang Xu, Sifat Ferdousi, Yusuke Hirota, Massimo Tornatore, Yoshinari Awaji, Biswanath Mukherjee:
Datacenter-Carrier Cooperation over Optical Networks during Disaster Recovery. OFC 2022: 1-3 - [c105]Oleg Karandin, Omran Ayoub, Francesco Musumeci, Yusuke Hirota, Yoshinari Awaji, Massimo Tornatore:
If Not Here, There. Explaining Machine Learning Models for Fault Localization in Optical Networks. ONDM 2022: 1-3 - [c104]Sjoerd van der Heide, Ruben S. Luis, Benjamin J. Puttnam, Georg Rademacher, Ton Koonen, Satoshi Shinada, Yoshinari Awaji, Hideaki Furukawa, Chigo Okonkwo:
Real-time transmission using a GPU-based Kramers-Kronig coherent receiver. OECC/PSC 2022: 1-3 - [c103]Yusuke Hirota, Masaki Shiraiwa, Sugang Xu, Yoshinari Awaji, Massimo Tornatore, Biswanath Mukherjee, Hideaki Furukawa:
Experimental Demonstration of Multipath and Continuous Repetition in Optical Packet/Circuit Networks. OECC/PSC 2022: 1-3 - [c102]Georg Rademacher, Ruben S. Luís, Benjamin J. Puttnam, Yoshinari Awaji, Hideaki Furukawa:
Petabit-per-second class transmission and switching. OECC/PSC 2022: 1-3 - [c101]Georg Rademacher, Benjamin J. Puttnam, Ruben S. Luís, Kazuhiko Aikawa, Yoshinari Awaji, Hideaki Furukawa:
Experimental Investigation of Nonlinear Signal Distortions in Multi-Span FMF Transmission. OECC/PSC 2022: 1-3 - 2021
- [c100]Ruben S. Luis, Benjamin J. Puttnam, Georg Rademacher, Yoshinari Awaji, Hideaki Furukawa:
Experimental Evaluation of the Crosstalk Impulse Response of a Temperature Controlled Homogeneous Multi-Core Fiber. ECOC 2021: 1-4 - [c99]Georg Rademacher, Benjamin J. Puttnam, Ruben S. Luis, Tobias A. Eriksson, Nicolas K. Fontaine, Mikael Mazur, Haoshuo Chen, Roland Ryf, David T. Neilson, Pierre Sillard, Frank Achten, Yoshinari Awaji, Hideaki Furukawa:
Ultra-wide band transmission in few-mode fibers. ECOC 2021: 1-4 - [c98]Isaac Sackey, Robert Elschner, Robert Emmerich, Carsten Schmidt-Langhorst, D. D. Groß, Georg Rademacher, Yoshinari Awaji, Hideaki Furukawa, Takemi Hasegawa, Colja Schubert, Ronald Freund:
Performance Evaluation of an Interband All-Optical Wavelength Converter for Cost-Effective High-Capacity Optical Networks. ECOC 2021: 1-4 - [c97]Sugang Xu, Kiyo Ishii, Noboru Yoshikane, Takehiro Tsuritani, Yoshinari Awaji, Shu Namiki:
Integration and Control of Heterogeneous Telecom and Data Center Optical Networks Aided by FBD and TAPI for Enhancing Large-scale Optical Path Services and Network Resiliency. ECOC 2021: 1-4 - [c96]Sjoerd van der Heide, Ruben S. Luis, Benjamin J. Puttnam, Georg Rademacher, Ton Koonen, Satoshi Shinada, Yoshinari Awaji, Hideaki Furukawa, Chigo Okonkwo:
10, 000 km Straight-line Transmission using a Real-time Software-defined GPU-Based Receiver. OFC 2021: 1-3 - [c95]Giap Le, Sifat Ferdousi, Andrea Marotta, Sugang Xu, Yusuke Hirota, Yoshinari Awaji, Massimo Tornatore, Biswanath Mukherjee:
Reliable Provisioning for Dynamic Content Requests in Optical Metro Networks. OFC 2021: 1-3 - [c94]Ruben S. Luís, Benjamin J. Puttnam, Georg Rademacher, Andrea Marotta, Cristian Antonelli, Fabio Graziosi, Antonio Mecozzi, Tetsuya Hayashi, Tetsuya Nakanishi, Satoshi Shinada, Yoshinari Awaji, Hideaki Furukawa, Naoya Wada:
Dynamic Skew in Multi-Core Fibers: From Lab Measurements to Field Trials. OFC 2021: 1-3 - [c93]Benjamin J. Puttnam, Ruben S. Luís, Georg Rademacher, Yoshinari Awaji, Hideaki Furukawa:
319 Tb/s Transmission over 3001 km with S, C and L band signals over >120nm bandwidth in 125 μm wide 4-core fiber. OFC 2021: 1-3 - [c92]Benjamin J. Puttnam, Ruben S. Luís, Georg Rademacher, Manuel Mendez-Astudilio, Yoshinari Awaji, Hideaki Furukawa:
S, C and Extended L-Band Transmission with Doped Fiber and Distributed Raman Amplification. OFC 2021: 1-3 - [c91]Georg Rademacher, Ruben S. Luís, Benjamin J. Puttnam, Roland Ryf, Sjoerd van der Heide, Tobias A. Eriksson, Nicolas K. Fontaine, Haoshuo Chen, René-Jean Essiambre, Yoshinari Awaji, Hideaki Furukawa:
High Capacity and Long-Haul Transmission with Space-Division Multiplexing. OFC 2021: 1-3 - [c90]Francesco Da Ros, Uiara C. de Moura, Ruben S. Luis, Georg Rademacher, Benjamin J. Puttnam, Ann Margareth Rosa Brusin, Andrea Carena, Yoshinari Awaji, Hideaki Furukawa, Darko Zibar:
Optimization of a Hybrid EDFA-Raman C+L Band Amplifier through Neural-Network Models. OFC 2021: 1-3 - [c89]Sugang Xu, Kiyo Ishii, Noboru Yoshikane, Takehiro Tsuritani, Yoshinari Awaji, Shu Namiki:
Blade Abstraction Interface for Diverse Blade Integration and Unified Control of Disaggregate/Legacy ROADMs. OFC 2021: 1-3 - 2020
- [j15]Sugang Xu, Goshi Sato, Masaki Shiraiwa, Katsuhiro Temma, Yasunori Owada, Noboru Yoshikane, Takehiro Tsuritani, Toshiaki Kuri, Yoshinari Awaji, Naruto Yonemoto, Naoya Wada:
Field-Trial Experiments of an IoT-Based Fiber Networks Control and Management-Plane Early Disaster Recovery via Narrow-Band and Lossy Links System (FRENLL). IEICE Trans. Commun. 103-B(11): 1214-1225 (2020) - [j14]Giap Le, Sifat Ferdousi, Andrea Marotta, Sugang Xu, Yusuke Hirota, Yoshinari Awaji, Massimo Tornatore, Biswanath Mukherjee:
Survivable virtual network mapping with content connectivity against multiple link failures in optical metro networks. JOCN 12(11): 301-311 (2020) - [j13]Sugang Xu, Noboru Yoshikane, Masaki Shiraiwa, Takehiro Tsuritani, Xiaocheng Zhang, Yoshinari Awaji, Naoya Wada:
A novel carrier-cooperation scheme with an incentive to offer emergency lightpath support during disaster recovery. Photonic Netw. Commun. 40(3): 175-193 (2020) - [j12]Sifat Ferdousi, Massimo Tornatore, Ferhat Dikbiyik, Charles U. Martel, Sugang Xu, Yusuke Hirota, Yoshinari Awaji, Biswanath Mukherjee:
Joint Progressive Network and Datacenter Recovery After Large-Scale Disasters. IEEE Trans. Netw. Serv. Manag. 17(3): 1501-1514 (2020) - [c88]Sugang Xu, Noboru Yoshikane, Masaki Shiraiwa, Yusuke Hirota, Takehiro Tsuritani, Sifat Ferdousi, Yoshinari Awaji, Naoya Wada, Biswanath Mukherjee:
Toward Disaster-Resilient Optical Networks with Open and Disaggregated Subsystems [Invited]. DRCN 2020: 1-6 - [c87]Francesco Musumeci, Virajit G. Venkata, Yusuke Hirota, Yoshinari Awaji, Sugang Xu, Masaki Shiraiwa, Biswanath Mukherjee, Massimo Tornatore:
Transfer Learning across Different Lightpaths for Failure-Cause Identification in Optical Networks. ECOC 2020: 1-4 - [c86]Sjoerd van der Heide, Ruben S. Luis, Benjamin J. Puttnam, Georg Rademacher, Ton Koonen, Satoshi Shinada, Yoshinari Awaji, Chigo Okonkwo, Hideaki Furukawa:
Real-time, Software-Defined, GPU-Based Receiver Field Trial. ECOC 2020: 1-4 - [c85]Ruben S. Luis, Benjamin J. Puttnam, Georg Rademacher, Tobias A. Eriksson, Yusuke Hirota, Satoshi Shinada, Andrew Ross-Adams, Simon Gross, Michael J. Withford, Ryo Maruyama, Kazuhiko Aikawa, Yoshinari Awaji, Hideaki Furukawa, Naoya Wada:
Petabit Class Transmission and Switching. ECOC 2020: 1-4 - [c84]Georg Rademacher, Benjamin J. Puttnam, Ruben S. Luís, Tobias A. Eriksson, Nicolas K. Fontaine, Mikael Mazur, Haoshuo Chen, Roland Ryf, David T. Neilson, Pierre Sillard, Frank Achten, Yoshinari Awaji, Hideaki Furukawa:
1.01 Peta-bit/s C+L-band transmission over a 15-mode fiber. ECOC 2020: 1-4 - [c83]Georg Rademacher, Benjamin J. Puttnam, Ruben S. Luís, Jun Sakaguchi, Werner Klaus, Tobias A. Eriksson, Yoshinari Awaji, Tetsuya Hayashi, Takuji Nagashima, Tetsuya Nakanishi, Toshiki Taru, Taketoshi Takahata, Tetsuya Kobayashi, Hideaki Furukawa:
Multi-Span Transmission over 65 km 38-Core 3-Mode Fiber. ECOC 2020: 1-4 - [c82]Yuki Yoshida, Kazunobu Kojima, Masaki Shiraiwa, Atsushi Kanno, Akira Hirano, Yosuke Nagasawa, Masamichi Ippommatsu, Naokatsu Yamamoto, Shigefusa Chichibu, Yoshinari Awaji:
Up-to 292-Mbps Deep-UV Communication over a Diffuse-Line-of-Sight Link Based on Silicon Photo Multiplier Array. ECOC 2020: 1-4 - [c81]Tobias A. Eriksson, Ruben S. Luís, Kadir Gümüs, Georg Rademacher, Benjamin J. Puttnam, Hideaki Furukawa, Naoya Wada, Yoshinari Awaji, Alex Alvarado, Masahide Sasaki, Masahiro Takeoka:
Digital Self-Coherent Continuous Variable Quantum Key Distribution System. OFC 2020: 1-3 - [c80]Yusuke Hirota, Sugang Xu, Masaki Shiraiwa, Yoshinari Awaji, Massimo Tornatore, Biswanath Mukherjee, Hideaki Furukawa, Naoya Wada:
Experimental Demonstration of Optical Multicast Packet Transmissions in Optical Packet/Circuit Integrated Networks. OFC 2020: 1-3 - [c79]Kiyo Ishii, Sugang Xu, Noboru Yoshikane, Atsuko Takefusa, Shigeyuki Yanagimachi, Takeshi Hoshida, Kohei Shiomoto, Tomohiro Kudoh, Takehiro Tsuritani, Yoshinari Awaji, Shu Namiki:
Automatic Resource Mapping using Functional Block Based Disaggregation Model for ROADM Networks. OFC 2020: 1-3 - [c78]Kiyo Ishii, Sugang Xu, Noboru Yoshikane, Atsuko Takefusa, Shigeyuki Yanagimachi, Takeshi Hoshida, Kohei Shiomoto, Tomohiro Kudoh, Takehiro Tsuritani, Yoshinari Awaji, Shu Namiki:
First Demonstration of Automated Updates of Disaggregate Blades in Multi-Domain/Layer Optical Path Network. OFC 2020: 1-3 - [c77]Ruben S. Luis, Benjamin J. Puttnam, Georg Rademacher, Andrea Marotta, Cristian Antonelli, Fabio Graziosi, Antonio Mecozzi, Tetsuya Hayashi, Tetsuya Nakanishi, Satoshi Shinada, Yoshinari Awaji, Hideaki Furukawa, Naoya Wada:
Evaluation of Dynamic Skew on Spooled and Deployed Multicore Fibers using O-Band Signals. OFC 2020: 1-3 - [c76]Andrea Marotta, Dajana Cassioli, Massimo Tornatore, Yusuke Hirota, Yoshinari Awaji, Biswanath Mukherjee:
Reliable Slicing with Isolation in Optical Metro-Aggregation Networks. OFC 2020: 1-3 - [c75]Benjamin J. Puttnam, Ruben S. Luís, Georg Rademacher, Lídia Galdino, Domaniç Lavery, Tobias A. Eriksson, Yoshinari Awaji, Hideaki Furukawa, Polina Bayvel, Naoya Wada:
0.596 Pb/s S, C, L-Band Transmission in a 125μm Diameter 4-Core Fiber using a Single Wideband Comb Source. OFC 2020: 1-3 - [c74]Georg Rademacher, Ruben S. Luís, Benjamin J. Puttnam, Roland Ryf, Sjoerd van der Heide, Tobias A. Eriksson, Nicolas K. Fontaine, Haoshuo Chen, René-Jean Essiambre, Yoshinari Awaji, Hideaki Furukawa, Naoya Wada:
172 Tb/s C+L Band Transmission over 2040 km Strongly Coupled 3-Core Fiber. OFC 2020: 1-3 - [c73]Georg Rademacher, Benjamin J. Puttnam, Ruben S. Luís, Jun Sakaguchi, Werner Klaus, Tobias A. Eriksson, Yoshinari Awaji, Tetsuya Hayashi, Takuji Nagashima, Tetsuya Nakanishi, Toshiki Taru, Taketoshi Takahata, Tetsuya Kobayashi, Hideaki Furukawa, Naoya Wada:
10.66 Peta-Bit/s Transmission over a 38-Core-Three-Mode Fiber. OFC 2020: 1-3 - [c72]Georg Rademacher, Roland Ryf, Nicolas K. Fontaine, Haoshuo Chen, Benjamin J. Puttnam, Ruben S. Luis, Yoshinari Awaji, Hideaki Furukawa, Naoya Wada:
Channel Dynamics in Few-Mode Fiber Transmission under Mechanical Vibrations. OFC 2020: 1-3
2010 – 2019
- 2019
- [j11]Yoshinari Awaji:
Review of Space-Division Multiplexing Technologies in Optical Communications. IEICE Trans. Commun. 102-B(1): 1-16 (2019) - [c71]Giap Le, Andrea Marotta, Sifat Ferdousi, Sugang Xu, Yusuke Hirota, Yoshinari Awaji, Massimo Tornatore, Biswanath Mukherjee:
Logical Network Mapping With Content Connectivity Against Multiple Link Failures in Optical Metro Networks. ANTS 2019: 1-3 - [c70]Sifat Ferdousi, Massimo Tornatore, Sugang Xu, Yoshinari Awaji, Biswanath Mukherjee:
Slice-Aware Service Restoration with Recovery Trucks for Optical Metro-Access Networks. GLOBECOM 2019: 1-6 - [c69]Tobias A. Eriksson, Benjamin J. Puttnam, Georg Rademacher, Ruben S. Luis, Masahiro Takeoka, Yoshinari Awaji, Masahide Sasaki, Naoya Wada:
Inter-Core Crosstalk Impact of Classical Channels on CV-QKD in Multicore Fiber Transmission. OFC 2019: 1-3 - [c68]Benjamin J. Puttnam, Georg Rademacher, Ruben S. Luis, Tobias A. Eriksson, Werner Klaus, Yoshinari Awaji, Naoya Wada, Koichi Maeda, Shigehiro Takasaka, Ryuichi Sugizaki:
0.715 Pb/s Transmission Over 2, 009.6 km in 19-Core Cladding Pumped EDFA Amplified MCF Link. OFC 2019: 1-3 - [c67]Benjamin J. Puttnam, Georg Rademacher, Ruben S. Luis, Hideaki Furukawa, Andrew Ross-Adams, Simon Gross, Michael J. Withford, Nicolas Riesen, Yusuke Sasaki, Kunimasa Saitoh, Kazuhike Aikawa, Yoshinari Awaji, Naoya Wada:
Dynamic Crosstalk Study in a Few-Mode-Multi-Core Fiber. OFC 2019: 1-3 - [c66]Georg Rademacher, Ruben S. Luis, Benjamin J. Puttnam, Yoshinari Awaji, Masato Suzuki, Takemi Hasegawa, Naoya Wada:
Wide-Band Intermodal Wavelength Conversion in a Dispersion Engineered Highly Nonlinear FMF. OFC 2019: 1-3 - [c65]Georg Rademacher, Ruben S. Luis, Benjamin J. Puttnam, Yoshinari Awaji, Naoya Wada:
Impact of Modulation Format on Dynamic Channel Crosstalk Behavior in Multi-Core Fibers. OFC 2019: 1-3 - [c64]John van Weerdenburg, Simon Rommel, Jose Manuel Delgado Mendinueta, Werner Klaus, Jun Sakaguchi, Juan Jose Vegas Olmos, Ton Koonen, Yoshinari Awaji, Idelfonso Tafur Monroy, Chigo Okonkwo, Naoya Wada:
Chromatic Dispersion Analysis and Compensation in a Large Core-Count Few-Mode Multi-Core Fiber Based on Optical Vector Network Analysis. OFC 2019: 1-3 - [c63]Sugang Xu, Noboru Yoshikane, Naoki Miyata, Masaki Shiraiwa, Takehiro Tsuritani, Xiaocheng Zhang, Yoshinari Awaji, Naoya Wada:
A Novel Carrier-Cooperation Scheme with an Incentive for Offering Emergency Lightpath Support in Disaster Recovery. ONDM 2019: 362-376 - [c62]Benjamin J. Puttnam, Georg Rademacher, Ruben S. Luís, Tobias A. Eriksson, Werner Klaus, Yoshinari Awaji, Naoya Wada, Koichi Maeda, Shigehiro Takasaka, Ryuichi Sugizaki:
Transmission and Crosstalk Measurements in MC-EDFA amplified 19-core link. OECC/PSC 2019: 1-3 - [c61]Georg Rademacher, Kasper Ingerslev, Ruben S. Luis, Benjamin J. Puttnam, Werner Klaus, Tobias A. Eriksson, Satoshi Shinada, Yoshinari Awaji, Ryu Maruyama, Kazuhike Aikawa, Naoya Wada:
A Scalable SDM Receiver Front-End using Spectral Filtering and LO-Signal Mixing in the Few-Mode Domain. OECC/PSC 2019: 1-3 - [c60]Masaki Shiraiwa, Hideaki Furukawa, Yusuke Hirota, Satoshi Shinada, Yoshinari Awaji, Naoya Wada:
Multi-Signal Power Collective Equalization for Dynamic Optical Path Operation. OECC/PSC 2019: 1-3 - [c59]Sugang Xu, Goshi Sato, Masaki Shiraiwa, Katsuhiro Temma, Yasunori Owada, Toshiaki Kuri, Yoshinari Awaji, Naruto Yonemoto, Naoya Wada:
Field-Trial of the Recovery of Fiber Networks C/M-Plane via an IoT-based Narrow-band and Lossy Links System (FRENLL). OECC/PSC 2019: 1-3 - 2018
- [j10]Sugang Xu, Noboru Yoshikane, Masaki Shiraiwa, Takehiro Tsuritani, Hiroaki Harai, Yoshinari Awaji, Naoya Wada:
Emergency optical network planning with multi-vendor interconnection and portable EDFAs. Ann. des Télécommunications 73(1-2): 127-138 (2018) - [c58]Daniel J. Elson, Benjamin J. Puttnam, Ruben S. Luis, Georg Rademacher, Eric Sillekens, Lídia Galdino, Domaniç Lavery, Yoshinari Awaji, Naoya Wada, Polina Bayvel:
Nonlinearity Mitigation in the Presence of Intercore-Crosstalk. ECOC 2018: 1-3 - [c57]Tobias A. Eriksson, Takuya Hirano, Georg Rademacher, Benjamin J. Puttnam, Ruben S. Luis, Mikio Fujiwara, Ryo Namiki, Yoshinari Awaji, Masahiro Takeoka, Naoya Wada, Masahide Sasaki:
Joint Propagation of Continuous Variable Quantum Key Distribution and 18µ24.5 Gbaud PM-16QAM Channels. ECOC 2018: 1-3 - [c56]Kazunobu Kojima, Yuki Yoshida, Masaki Shiraiwa, Yoshinari Awaji, Atsushi Kanno, Naokatsu Yamamoto, Shigefusa Chichibu:
1.6-Gbps LED-Based Ultraviolet Communication at 280 nm in Direct Sunlight. ECOC 2018: 1-3 - [c55]Ruben S. Luis, Georg Rademacher, Benjamin J. Puttnam, Tobias A. Eriksson, Hideaki Furukawa, Andrew Ross-Adams, Simon Gross, Michael J. Withford, Nicolas Riesen, Yusuke Sasaki, Kunimasa Saitoh, Kazuhiko Aikawa, Yoshinari Awaji, Naoya Wada:
1.2 Pb/s Transmission Over a 160 µm Cladding, 4-Core, 3-Mode Fiber, Using 368 C+L band PDM-256-QAM Channels. ECOC 2018: 1-3 - [c54]Benjamin J. Puttnam, Georg Rademacher, Ruben S. Luis, Yoshinari Awaji, Naoya Wada:
Inter-Core Crosstalk Penalties in Wideband WDM, MCF Transmission Over Transoceanic Distances. ECOC 2018: 1-3 - [c53]Georg Rademacher, Ruben S. Luis, Benjamin J. Puttnam, Hideaki Furukawa, Ryo Maruyama, Kazuhiko Aikawa, Yoshinari Awaji, Naoya Wada:
Experimental Investigation of Intermodal Nonlinear Signal Degradation in a Few-Mode Fiber Transmission System. ECOC 2018: 1-3 - [c52]Georg Rademacher, Roland Ryf, Nicolas K. Fontaine, Haoshuo Chen, Robert M. Jopson, René-Jean Essiambre, Benjamin J. Puttnam, Ruben S. Luis, Yoshinari Awaji, Naoya Wada, Simon Gross, Nicolas Riesen, Michael J. Withford, Yi Sun, Robert Lingle:
Experimental Investigation of Parametric Mode and Wavelength Conversion in a 4.7 km Few-Mode Fiber. ECOC 2018: 1-3 - [c51]Simon Rommel, Jose Manuel Delgado Mendinueta, Werner Klaus, Jun Sakaguchi, Juan Jose Vegas Olmos, Yoshinari Awaji, Idelfonso Tafur Monroy, Naoya Wada:
Measurement of Modal Dispersion and Group Delay in a Large Core Count Few-Mode Multi-Core Fiber. ECOC 2018: 1-3 - [c50]Jun Sakaguchi, Werner Klaus, Yoshinari Awaji, Naoya Wada, Tetsuya Hayashi, Takuji Nagashima, Tetsuya Nakanishi, Toshiki Taru, Taketoshi Takahata, Tetsuya Kobayashi:
228-Spatial-Channel Bi-Directional Data Communication System Enabled by 39-Core 3-Mode Fiber. ECOC 2018: 1-3 - [c49]Sugang Xu, Masaki Shiraiwa, Yusuke Hirota, Hideaki Furukawa, Yoshinari Awaji, Naoya Wada:
Flexible Manipulation of OPS Network Topologies with Optical Packet Flow Cut-Through in OPCI Networks. ECOC 2018: 1-3 - [c48]Ruben S. Luis, Georg Rademacher, Benjamin J. Puttnam, Yoshinari Awaji, Naoya Wada:
Recent Advances Using Homogeneous Single-Mode Multicore Fibers for Spatial Division Multiplexing. ICTON 2018: 1-3 - [c47]Benjamin J. Puttnam, Georg Rademacher, Ruben S. Luis, Jun Sakaguchi, Yoshinari Awaji, Naoya Wada:
Inter-Core Skew Measurements in Temperature Controlled Multi-Core Fiber. OFC 2018: 1-3 - [c46]Georg Rademacher, Ruben S. Luis, Benjamin J. Puttnam, Tobias A. Eriksson, Erik Agrell, Ryo Maruyama, Kazuhiko Aikawa, Hideaki Furukawa, Yoshinari Awaji, Naoya Wada:
159 Tbit/s C+L Band Transmission over 1045 km 3-Mode Graded-Index Few-Mode Fiber. OFC 2018: 1-3 - [c45]Georg Rademacher, Ruben S. Luis, Benjamin J. Puttnam, Roland Ryf, Hideaki Furukawa, Ryo Maruyama, Kazuhiko Aikawa, Akihiro Maruta, Yoshinari Awaji, Naoya Wada:
93.34 Tbit/s/mode (280 Tbit/s) Transmission in a 3-Mode Graded-Index Few-Mode Fiber. OFC 2018: 1-3 - [c44]Masaki Shiraiwa, Noboru Yoshikane, Sugang Xu, Takehiro Tsuritani, Naoki Miyata, Tatsuo Mori, Masatake Miyabe, Toru Katagiri, Sota Yoshida, Masaki Tanaka, Tomofumi Hayashi, Hidetsugu Sugiyama, Ikuo Satou, Mashito Mikuni, Satoru Okamoto, Naoaki Yamanaka, Yoshinari Awaji, Naoya Wada:
First Experimental Demonstration of Disaggregated Emergency Optical System for Quick Disaster Recovery. OFC 2018: 1-3 - [c43]Sugang Xu, Noboru Yoshikane, Masaki Shiraiwa, Takehiro Tsuritani, Hiroaki Harai, Yoshinari Awaji, Naoya Wada:
Node Internal Modeling for Network Recovery with Emergency Optical Systems. OFC 2018: 1-3 - [c42]Kasper Ingerslev, Georg Rademacher, Ruben S. Luís, Benjamin J. Puttnam, Werner Klaus, Satoshi Shinada, Yoshinari Awaji, Karsten Rottwitt, Toshio Morioka, Leif Katsuo Oxenløwe, Naoya Wada:
Free-Space Few-Mode Kramers-Kronig Receiver. PSC 2018: 1-3 - [c41]Georg Rademacher, Ruben S. Luís, Benjamin J. Puttnam, Tobias A. Eriksson, Hideaki Furukawa, Yoshinari Awaji, Ryo Maruyama, Kazuhiko Aikawa, Naoya Wada:
Record Spectral Efficient Transmission of 11.24 Bit/s/Hz/mode over 30 km Few-Mode Fiber. PSC 2018: 1-3 - [c40]Sugang Xu, Noboru Yoshikane, Masaki Shiraiwa, Takehiro Tsuritani, Yoshinari Awaji, Naoya Wada:
Multicarrier-collaboration-based Emergency Packet Transport Network Construction in Disaster Recovery. RNDM 2018: 1-7 - 2017
- [j9]Toshio Morioka, Yoshinari Awaji, Yuichi Matsushima, Takeshi Kamiya:
R&D of 3M Technologies towards the Realization of Exabit/s Optical Communications. IEICE Trans. Commun. 100-B(9): 1707-1715 (2017) - [j8]Werner Klaus, Benjamin J. Puttnam, Ruben S. Luís, Jun Sakaguchi, José Manuel Delgado Mendinueta, Yoshinari Awaji, Naoya Wada:
Advanced Space Division Multiplexing Technologies for Optical Networks. JOCN 9(4): C1-C11 (2017) - [j7]Yoshinari Awaji, Hideaki Furukawa, Sugang Xu, Masaki Shiraiwa, Naoya Wada, Takehiro Tsuritani:
Resilient Optical Network Technologies for Catastrophic Disasters [Invited]. JOCN 9(6): A280-A289 (2017) - [c39]Keisuke Kasai, Toshihiko Hirooka, Masato Yoshida, Masataka Nakazawa, Masaki Shiraiwa, Yoshinari Awaji, Naoya Wada:
Single-carrier 552 Gbit/s, 46 Gbaud 64 QAM Coherent Transmission over 100 km with Co-propagating 10 Gbit/s-OOK Signals Through a Deployed ROADM Network. ECOC 2017: 1-3 - [c38]Ruben S. Luis, Benjamin J. Puttnam, Georg Rademacher, Yoshinari Awaji, Naoya Wada:
On the Use of High-Order MIMO for Long-Distance Homogeneous Single-Mode Multicore Fiber Transmission. ECOC 2017: 1-3 - [c37]Benjamin J. Puttnam, Georg Rademacher, Ruben S. Luis, Werner Klaus, Yoshinari Awaji, Naoya Wada:
Inter-Core Crosstalk Spectrum and Penalty Measurements in 7-Core Fiber. ECOC 2017: 1-3 - [c36]Georg Rademacher, Ruben S. Luis, Benjamin J. Puttnam, Yoshinari Awaji, Naoya Wada:
Performance Fluctuations in Direct Detection Multi-Core Fiber Transmission Systems. ECOC 2017: 1-3 - [c35]Georg Rademacher, Roland Ryf, Nicolas K. Fontaine, Haoshuo Chen, René-Jean Essiambre, Benjamin J. Puttnam, Ruben S. Luis, Yoshinari Awaji, Naoya Wada, Simon Gross, Nicolas Riesen, Michael J. Withford, Yi Sun, Robert Lingle:
3500-km Mode-Multiplexed Transmission Through a Three-Mode Graded-Index Few-Mode Fiber Link. ECOC 2017: 1-3 - [c34]Simon Rommel, Jose Manuel Delgado Mendinueta, Werner Klaus, Jun Sakaguchi, Juan Jose Vegas Olmos, Yoshinari Awaji, Idelfonso Tafur Monroy, Naoya Wada:
Analysis of Few-Mode Multi-Core Fiber Splice Behavior Using an Optical Vector Network Analyzer. ECOC 2017: 1-3 - [c33]Jun Sakaguchi, Werner Klaus, Benjamin J. Puttnam, Jose Manuel Delgado Mendinueta, Yoshinari Awaji, Naoya Wada:
Spectrally-Efficient Seed-Lightwave-Distribution System using Space-Division-Multiplexed Distribution Channel for Multi-core 3-Mode-Multiplexed DP-64QAM Transmission. ECOC 2017: 1-3 - [c32]Kariyawasam Indipalage Amila Sampath, Masaki Shiraiwa, Yoshinari Awaji, Joji Maeda, Katsumi Takano:
50-km transmission experiment of phase-shift method-based carrier-emitted optical SSB signal without dispersion compensation. ICIIS 2017: 1-4 - [c31]Tiago M. F. Alves, Adolfo V. T. Cartaxo, Ruben S. Luis, Benjamin J. Puttnam, Yoshinari Awaji, Naoya Wada:
Adaptive loading with extended memory to relax the impact of the phase noise-impaired ICXT in DD-OFDM MCF-based systems. ICTON 2017: 1-5 - [c30]Adolfo V. T. Cartaxo, Tiago M. F. Alves, Benjamin J. Puttnam, Ruben S. Luis, Yoshinari Awaji, Naoya Wada:
DD-OFDM multicore fiber systems impaired by intercore crosstalk and laser phase noise. ICTON 2017: 1-5 - [c29]Josep M. Fàbrega, Michela Svaluto Moreolo, Laia Nadal, Pascual Sevillano, Asier Villafranca, Yuki Yoshida, Masaki Shiraiwa, Yoshinari Awaji, Naoya Wada, Ken-ichi Kitayama:
All-optical in-band OSNR estimation in coherent optical OFDM systems. ICTON 2017: 1-4 - [c28]Benjamin J. Puttnam, Ruben S. Luis, Georg Rademacher, Werner Klaus, Jun Sakaguchi, Yoshinari Awaji, Naoya Wada:
Homogeneous multi-core fibers in future optical networks. ICTON 2017: 1 - [c27]Ruben S. Luis, Benjamin J. Puttnam, Georg Rademacher, Werner Klaus, Yoshinari Awaji, Naoya Wada:
Investigation of inter-core crosstalk and Raman nonlinearity in wideband MCF transmission. OFC 2017: 1-3 - [c26]Benjamin J. Puttnam, Ruben S. Luis, Georg Rademacher, Jun Sakaguchi, Werner Klaus, Yoshinari Awaji, Naoya Wada, Erik Agrell, J. Marciante, Bill P.-P. Kuo, Stojan Radic:
High-capacity MCF transmission with wideband comb. OFC 2017: 1-3 - [c25]Georg Rademacher, Benjamin J. Puttnam, Ruben S. Luis, Yoshinari Awaji, Naoya Wada:
Time-dependent crosstalk from multiple cores in a homogeneous multi-core fiber. OFC 2017: 1-3 - 2016
- [j6]Sugang Xu, Noboru Yoshikane, Masaki Shiraiwa, Takehiro Tsuritani, Hiroaki Harai, Yoshinari Awaji, Naoya Wada:
Emergency Optical Network Construction and Control with Multi-Vendor Interconnection for Quick Disaster Recovery. IEICE Trans. Commun. 99-B(2): 370-384 (2016) - [c24]Sugang Xu, Noboru Yoshikane, Masaki Shiraiwa, Takehiro Tsuritani, Hiroaki Harai, Yoshinari Awaji, Naoya Wada:
Multi-vendor interconnection-based emergency optical networks design with optimal placement of portable EDFAs in disaster recovery. DRCN 2016: 55-61 - [c23]Naoya Wada, Benjamin J. Puttnam, Ruben S. Luis, Jun Sakaguchi, Werner Klaus, Jose Manuel Delgado Mendinueta, Yoshinari Awaji:
Space division multiplexing (SDM) transmission and related technologies. ICTON 2016: 1-4 - [c22]Yoshinari Awaji, Hideaki Furukawa, Sugang Xu, Masaki Shiraiwa, Naoya Wada, Takehiro Tsuritani:
Resilient optical network technologies for catastrophic disasters. OFC 2016: 1-3 - [c21]Yuki Yoshida, Ken-ichi Kitayama, Y. Kai, Masato Nishihara, Ryo Okabe, Toshiki Tanaka, Tomoo Takahara, Jens C. Rasmussen, Noboru Yoshikane, Xiaoyuan Cao, Takehiro Tsuritani, Itsuro Morita, Arturo Mayoral, Josep M. Fabrega, Ricard Vilalta, Ramon Casellas, Ricardo Martínez, Michela Svaluto Moreolo, Raul Muñoz, Kai Habel, Ronald Freund, Víctor López, Alejandro Aguado, Shuangyi Yan, Dimitra Simeonidou, Thomas Szyrkowiec, Achim Autenrieth, Masaki Shiraiwa, Yoshinari Awaji, Naoya Wada:
First demonstration of cognitive SDN orchestration: A real-time congestion-aware services provisioning over OFDM-based 400G OPS and Flexi-WDM OCS networks. OFC 2016: 1-3 - 2015
- [j5]Toshihiko Hirooka, Keisuke Kasai, Yixin Wang, Masataka Nakazawa, Masaki Shiraiwa, Yoshinari Awaji, Naoya Wada:
First demonstration of digital coherent transmission in a deployed ROADM network with a 120 Gbit/s polarization-multiplexed 64 QAM signal. IEICE Electron. Express 12(23): 20150884 (2015) - [j4]Masaki Shiraiwa, Yoshinari Awaji, Naoya Wada, Atsushi Kanno, Toshiaki Kuri, Pham Tien Dat, Tetsuya Kawanishi:
New Burst-Mode Erbium-Doped Fiber Amplifier with Wide Linearity and High Output Power for Uplink Analog Radio-over-Fiber Signal Transmission. IEICE Trans. Electron. 98-C(8): 832-839 (2015) - [c20]Sugang Xu, Noboru Yoshikane, Masaki Shiraiwa, Takehiro Tsuritani, Hiroaki Harai, Yoshinari Awaji, Naoya Wada:
Multi-vendor interconnection-based emergency multi-layer networks in disaster recovery. DRCN 2015: 179-184 - [c19]Ruben S. Luis, Benjamin J. Puttnam, Jose Manuel Delgado Mendinueta, Yoshinari Awaji, Naoya Wada:
Experimental demonstration of a polarization-insensitive self-homodyne detection receiver for optical access. ECOC 2015: 1-3 - [c18]Benjamin J. Puttnam, Ruben S. Luis, Werner Klaus, Jun Sakaguchi, Jose Manuel Delgado Mendinueta, Yoshinari Awaji, Naoya Wada, Yoshiaki Tamura, Tetsuya Hayashi, Masaaki Hirano, J. Marciante:
2.15 Pb/s transmission using a 22 core homogeneous single-mode multi-core fiber and wideband optical comb. ECOC 2015: 1-3 - [c17]Benjamin J. Puttnam, Ruben S. Luís, Jose Manuel Delgado Mendinueta, Yoshinari Awaji, Naoya Wada, Erik Agrell:
Linear block-coding across >5 Tb/s PDM-64QAM spatial-super-channels in a 19-core fiber. ECOC 2015: 1-3 - [c16]Georg Rademacher, Benjamin J. Puttnam, Ruben S. Luís, Yoshinari Awaji, Naoya Wada, Erik Agrell, Klaus Petermann:
Experimental investigation of a 16-dimensional modulation format for long-haul multi-core fiber transmission. ECOC 2015: 1-3 - [c15]Ruben S. Luis, Benjamin J. Puttnam, Werner Klaus, Jose Manuel Delgado Mendinueta, Yoshinari Awaji, Naoya Wada, Atsushi Kanno, Tetsuya Kawanishi, Tetsuya Nakanishi, Tetsuya Hayashi, Takashi Sasaki:
Experimental evaluation of the time and frequency crosstalk dependency in a 7-core multi-core fiber. OFC 2015: 1-3 - [c14]Benjamin J. Puttnam, Ruben S. Luis, Jose Manuel Delgado Mendinueta, Jun Sakaguchi, Werner Klaus, Yoshinari Awaji, Naoya Wada, Atsushi Kanno, Tetsuya Kawanishi:
Long distance transmission in a multi-core fiber with self-homodyne detection. OFC 2015: 1-3 - [c13]Jun Sakaguchi, Werner Klaus, Jose Manuel Delgado Mendinueta, Benjamin J. Puttnam, Ruben S. Luis, Yoshinari Awaji, Naoya Wada, Tetsuya Hayashi, Tetsuya Nakanishi, T. Watanabe, Y. Kokubun, Taketoshi Takahata, T. Kobayashi:
Realizing a 36-core, 3-mode fiber with 108 spatial channels. OFC 2015: 1-3 - [c12]Jun Sakaguchi, Takahide Sakamoto, Atsushi Kanno, Yoshinari Awaji, Naoya Wada, Tetsuya Kawanishi:
Optical comb-based versatile wavelength division multicasting add-drop node for efficient WDM networks. OFC 2015: 1-3 - 2014
- [c11]Benjamin J. Puttnam, Jose Manuel Delgado Mendinueta, Ruben S. Luís, Tobias A. Eriksson, Yoshinari Awaji, Naoya Wada, Erik Agrell:
Single parity check multi-core modulation for power efficient spatial super-channels. ECOC 2014: 1-3 - [c10]Jun Sakaguchi, Yoshinari Awaji, Naoya Wada:
Development of carrier-phase synchronization swapper for space-division multiplexed self-homodyne optical networks. ECOC 2014: 1-3 - [c9]Jose Manuel Delgado Mendinueta, Ruben S. Luis, Benjamin J. Puttnam, Jun Sakaguchi, Werner Klaus, Yoshinari Awaji, Naoya Wada, Atsushi Kanno, Tetsuya Kawanishi:
Digital signal processing techniques for multi-core fiber transmission using self-homodyne detection schemes. EUSIPCO 2014: 1880-1884 - [c8]Sugang Xu, Masaki Shiraiwa, Noboru Yoshikane, Takehiro Tsuritani, Hiroaki Harai, Yoshinari Awaji, Naoya Wada:
Smooth quick-in and fade-out operations-enabled emergency optical networks for disaster recovery. OFC 2014: 1-3 - 2013
- [c7]Norberto Amaya, M. Irfan, Georgios S. Zervas, Reza Nejabati, Dimitra Simeonidou, V. J. F. Rancano, Francesca Parmigiani, Periklis Petropoulos, David J. Richardson, Jun Sakaguchi, Werner Klaus, Benjamin J. Puttnam, Takaya Miyazawa, Yoshinari Awaji, Naoya Wada, I. Henning:
On-demand spectrum and space defragmentation in an elastic SDM/FDM/TDM network with mixed multi- and single-core fiber links. OFC/NFOEC 2013: 1-3 - [c6]Jose Manuel Delgado Mendinueta, Benjamin J. Puttnam, Jun Sakaguchi, Ruben S. Luis, Werner Klaus, Yoshinari Awaji, Naoya Wada, Atsushi Kanno, Tetsuya Kawanishi:
Investigation of receiver DSP carrier phase estimation rate for self-homodyne space-division multiplexing communication systems. OFC/NFOEC 2013: 1-3 - [c5]Benjamin J. Puttnam, Jose Manuel Delgado Mendinueta, Jun Sakaguchi, Ruben S. Luis, Werner Klaus, Yoshinari Awaji, Naoya Wada, Atsushi Kanno, Tetsuya Kawanishi:
105Tb/s transmission system using low-cost, MHz linewidth DFB lasers enabled by self-homodyne coherent detection and a 19-core fiber. OFC/NFOEC 2013: 1-3 - [c4]Jun Sakaguchi, Yoshinari Awaji, Naoya Wada:
Fundamental study on new characterization method for crosstalk property of multi-core fibers using long wavelength probe signals. OFC/NFOEC 2013: 1-3 - [c3]Jun Sakaguchi, Benjamin J. Puttnam, Werner Klaus, Jose Manuel Delgado Mendinueta, Yoshinari Awaji, Naoya Wada, Atsushi Kanno, Tetsuya Kawanishi:
Large-capacity transmission over a 19-core fiber. OFC/NFOEC 2013: 1-3 - 2012
- [j3]Toshio Morioka, Yoshinari Awaji, Roland Ryf, Peter J. Winzer, David J. Richardson, Francesco Poletti:
Enhancing optical communications with brand new fibers. IEEE Commun. Mag. 50(2) (2012) - 2011
- [j2]Benjamin J. Puttnam, Yoshinari Awaji, Naoya Wada:
Investigating the Performance of a Transient-Suppressed EDFA in Optical Packet and Burst-Switched Networks. IEICE Trans. Commun. 94-B(7): 1853-1859 (2011)
2000 – 2009
- 2008
- [j1]Yoshinari Awaji, Hideaki Furukawa, Naoya Wada, Eddie Kong, Peter Chan, Ray Man:
Guidelines for amplification of optical packets in WDM environment regarding impact of transient response of erbium-doped fiber amplifier. Comput. Networks 52(10): 2087-2093 (2008) - 2007
- [c2]Yoshinari Awaji, Hideaki Furukawa, Naoya Wada, Eddie Kong, Peter Chan, Ray Man:
Impact of Transient Response of Erbium-Doped Fiber Amplifier for OPS/WDM and Its Mitigation. ONDM 2007: 29-37 - 2004
- [c1]Yoshinari Awaji, Tetsuya Miyazaki, Fumito Kubota:
40Gb/s WDM-Multicasting Wavelength Conversion from 160Gb/s OTDM Signal. OpNeTec 2004: 292-298
Coauthor Index
aka: Ruben S. Luís
aka: José Manuel Delgado Mendinueta
manage site settings
To protect your privacy, all features that rely on external API calls from your browser are turned off by default. You need to opt-in for them to become active. All settings here will be stored as cookies with your web browser. For more information see our F.A.Q.
Unpaywalled article links
Add open access links from to the list of external document links (if available).
Privacy notice: By enabling the option above, your browser will contact the API of unpaywall.org to load hyperlinks to open access articles. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Unpaywall privacy policy.
Archived links via Wayback Machine
For web page which are no longer available, try to retrieve content from the of the Internet Archive (if available).
Privacy notice: By enabling the option above, your browser will contact the API of archive.org to check for archived content of web pages that are no longer available. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Internet Archive privacy policy.
Reference lists
Add a list of references from , , and to record detail pages.
load references from crossref.org and opencitations.net
Privacy notice: By enabling the option above, your browser will contact the APIs of crossref.org, opencitations.net, and semanticscholar.org to load article reference information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Crossref privacy policy and the OpenCitations privacy policy, as well as the AI2 Privacy Policy covering Semantic Scholar.
Citation data
Add a list of citing articles from and to record detail pages.
load citations from opencitations.net
Privacy notice: By enabling the option above, your browser will contact the API of opencitations.net and semanticscholar.org to load citation information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the OpenCitations privacy policy as well as the AI2 Privacy Policy covering Semantic Scholar.
OpenAlex data
Load additional information about publications from .
Privacy notice: By enabling the option above, your browser will contact the API of openalex.org to load additional information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the information given by OpenAlex.
last updated on 2024-10-07 21:23 CEST by the dblp team
all metadata released as open data under CC0 1.0 license
see also: Terms of Use | Privacy Policy | Imprint