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Nisha Jacob
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2020 – today
- 2022
- [j3]Mathieu Gross, Nisha Jacob, Andreas Zankl, Georg Sigl:
Breaking TrustZone memory isolation and secure boot through malicious hardware on a modern FPGA-SoC. J. Cryptogr. Eng. 12(2): 181-196 (2022) - 2021
- [j2]Florian Unterstein, Nisha Jacob, Neil Hanley, Chongyan Gu, Johann Heyszl:
SCA secure and updatable crypto engines for FPGA SoC bitstream decryption: extended version. J. Cryptogr. Eng. 11(3): 257-272 (2021) - 2020
- [i2]Florian Unterstein, Tolga Sel, Thomas Zeschg, Nisha Jacob, Michael Tempelmeier, Michael Pehl, Fabrizio De Santis:
Secure Update of FPGA-based Secure Elements using Partial Reconfiguration. IACR Cryptol. ePrint Arch. 2020: 833 (2020)
2010 – 2019
- 2019
- [c7]Mathieu Gross, Nisha Jacob, Andreas Zankl, Georg Sigl:
Breaking TrustZone Memory Isolation through Malicious Hardware on a Modern FPGA-SoC. ASHES@CCS 2019: 3-12 - [c6]Florian Unterstein, Nisha Jacob, Neil Hanley, Chongyan Gu, Johann Heyszl:
SCA Secure and Updatable Crypto Engines for FPGA SoC Bitstream Decryption. ASHES@CCS 2019: 43-53 - 2017
- [c5]Nisha Jacob, Johann Heyszl, Andreas Zankl, Carsten Rolfes, Georg Sigl:
How to Break Secure Boot on FPGA SoCs Through Malicious Hardware. CHES 2017: 425-442 - [c4]Nisha Jacob, Carsten Rolfes, Andreas Zankl, Johann Heyszl, Georg Sigl:
Compromising FPGA SoCs using malicious hardware blocks. DATE 2017: 1122-1127 - [c3]Nisha Jacob, Jakob Wittmann, Johann Heyszl, Robert Hesselbarth, Florian Wilde, Michael Pehl, Georg Sigl, Kai Fischer:
Securing FPGA SoC configurations independent of their manufacturers. SoCC 2017: 114-119 - [i1]Nisha Jacob, Johann Heyszl, Andreas Zankl, Carsten Rolfes, Georg Sigl:
How to Break Secure Boot on FPGA SoCs through Malicious Hardware. IACR Cryptol. ePrint Arch. 2017: 625 (2017) - 2014
- [j1]Nisha Jacob, Dominik Merli, Johann Heyszl, Georg Sigl:
Hardware Trojans: current challenges and approaches. IET Comput. Digit. Tech. 8(6): 264-273 (2014) - 2012
- [c2]Chien-Ning Chen, Nisha Jacob, Sebastian Kutzner, San Ling, Axel Poschmann, Sirote Saetang:
Standardized Signature Algorithms on Ultra-constrained 4-Bit MCU. IWSEC 2012: 37-50 - [c1]Nisha Jacob, Sirote Saetang, Chien-Ning Chen, Sebastian Kutzner, San Ling, Axel Poschmann:
Feasibility and Practicability of Standardized Cryptography on 4-bit Micro Controllers. Selected Areas in Cryptography 2012: 184-201
Coauthor Index
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