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Ciara Rafferty
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- affiliation: Queen's University Belfast, UK
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2020 – today
- 2024
- [c18]Yasir Ali Shah, Ciara Rafferty, Ayesha Khalid, Safiullah Khan, Khalid Javeed, Máire O'Neill:
Efficient Soft Core Multiplier for Post Quantum Digital Signatures. ISCAS 2024: 1-5 - [c17]Anh-Tuan Hoang, Mark Kennaway, Dung Tuan Pham, Thai Son Mai, Ayesha Khalid, Ciara Rafferty, Máire O'Neill:
Deep Learning Enhanced Side Channel Analysis on CRYSTALS-Kyber. ISQED 2024: 1-8 - 2023
- [c16]Shabnam Khanna, Ciara Rafferty:
Approximate Homomorphic Pre-Processing for CNNs. SECRYPT 2023: 710-715 - [c15]Safiullah Khan, Ayesha Khalid, Ciara Rafferty, Yasir Ali Shah, Máire O'Neill, Wai-Kong Lee, Seong Oun Hwang:
Efficient, Error-Resistant NTT Architectures for CRYSTALS-Kyber FPGA Accelerators. VLSI-SoC 2023: 1-6 - 2022
- [c14]Donal Campbell, Ciara Rafferty, Ayesha Khalid, Máire O'Neill:
Acceleration of Post Quantum Digital Signature Scheme CRYSTALS-Dilithium on Reconfigurable Hardware. FPL 2022: 462-463 - 2020
- [j5]Weiqiang Liu, Ziying Ni, Jian Ni, Ciara Rafferty, Máire O'Neill:
High Performance Modular Multiplication for SIDH. IEEE Trans. Comput. Aided Des. Integr. Circuits Syst. 39(10): 3118-3122 (2020) - [c13]Séamus Brannigan, Máire O'Neill, Ayesha Khalid, Ciara Rafferty:
A Secure Algorithm for Rounded Gaussian Sampling. CANS 2020: 593-612 - [c12]Shabnam Khanna, Ciara Rafferty:
Accelerating Homomorphic Encryption using Approximate Computing Techniques. ICETE (2) 2020: 380-387
2010 – 2019
- 2019
- [j4]Weiqiang Liu, Sailong Fan, Ayesha Khalid, Ciara Rafferty, Máire O'Neill:
Optimized Schoolbook Polynomial Multiplication for Compact Lattice-Based Cryptography on FPGA. IEEE Trans. Very Large Scale Integr. Syst. 27(10): 2459-2463 (2019) - 2018
- [j3]James Howe, Ayesha Khalid, Ciara Rafferty, Francesco Regazzoni, Máire O'Neill:
On Practical Discrete Gaussian Samplers for Lattice-Based Cryptography. IEEE Trans. Computers 67(3): 322-334 (2018) - [c11]Ayesha Khalid, Ciara Rafferty, James Howe, Séamus Brannigan, Weiqiang Liu, Máire O'Neill:
Error Samplers for Lattice-Based Cryptography -Challenges, Vulnerabilities and Solutions. APCCAS 2018: 411-414 - [c10]Ayesha Khalid, James Howe, Ciara Rafferty, Francesco Regazzoni, Máire O'Neill:
Compact, Scalable, and Efficient Discrete Gaussian Samplers for Lattice-Based Cryptography. ISCAS 2018: 1-5 - [c9]Séamus Brannigan, Máire O'Neill, Ayesha Khalid, Ciara Rafferty:
Addressing Side-Channel Vulnerabilities in the Discrete Ziggurat Sampler. SPACE 2018: 65-84 - [i2]Ayesha Khalid, James Howe, Ciara Rafferty, Francesco Regazzoni, Máire O'Neill:
Compact, Scalable, and Efficient Discrete Gaussian Samplers for Lattice-Based Cryptography. IACR Cryptol. ePrint Arch. 2018: 265 (2018) - 2017
- [j2]Ciara Rafferty, Máire McLoone, Neil Hanley:
Evaluation of Large Integer Multiplication Methods on Hardware. IEEE Trans. Computers 66(8): 1369-1382 (2017) - [c8]James Howe, Ciara Rafferty, Ayesha Khalid, Máire O'Neill:
Compact and provably secure lattice-based signatures in hardware. ISCAS 2017: 1-4 - 2016
- [j1]Xiaolin Cao, Ciara Moore, Máire O'Neill, Elizabeth O'Sullivan, Neil Hanley:
Optimised Multiplication Architectures for Accelerating Fully Homomorphic Encryption. IEEE Trans. Computers 65(9): 2794-2806 (2016) - [c7]Máire O'Neill, Elizabeth O'Sullivan, Gavin McWilliams, Markku-Juhani O. Saarinen, Ciara Moore, Ayesha Khalid, James Howe, Rafaël Del Pino, Michel Abdalla, Francesco Regazzoni, Felipe Valencia, Tim Güneysu, Tobias Oder, Adrian Waller, Glyn Jones, Anthony Barnett, Robert Griffin, Andrew Byrne, Bassem Ammar, David Lund:
Secure architectures of future emerging cryptography SAFEcrypto. Conf. Computing Frontiers 2016: 315-322 - [c6]James Howe, Ciara Moore, Máire O'Neill, Francesco Regazzoni, Tim Güneysu, K. Beeden:
Standard lattices in hardware. DAC 2016: 162:1-162:6 - [c5]Ayesha Khalid, James Howe, Ciara Rafferty, Máire O'Neill:
Time-independent discrete Gaussian sampling for post-quantum cryptography. FPT 2016: 241-244 - 2015
- [b1]Ciara Moore:
Accelerating fully homomorphic encryption over the integers. Queen's University Belfast, UK, 2015 - 2014
- [c4]Xiaolin Cao, Ciara Moore, Máire O'Neill, Neil Hanley, Elizabeth O'Sullivan:
High-Speed Fully Homomorphic Encryption Over the Integers. Financial Cryptography Workshops 2014: 169-180 - [c3]Ciara Moore, Máire O'Neill, Elizabeth O'Sullivan, Yarkin Doröz, Berk Sunar:
Practical homomorphic encryption: A survey. ISCAS 2014: 2792-2795 - [c2]Ciara Moore, Máire O'Neill, Neil Hanley, Elizabeth O'Sullivan:
Accelerating integer-based fully homomorphic encryption using Comba multiplication. SiPS 2014: 62-67 - 2013
- [c1]Ciara Moore, Neil Hanley, John McAllister, Máire O'Neill, Elizabeth O'Sullivan, Xiaolin Cao:
Targeting FPGA DSP Slices for a Large Integer Multiplier for Integer Based FHE. Financial Cryptography Workshops 2013: 226-237 - [i1]Xiaolin Cao, Ciara Moore, Máire O'Neill, Elizabeth O'Sullivan, Neil Hanley:
Accelerating Fully Homomorphic Encryption over the Integers with Super-size Hardware Multiplier and Modular Reduction. IACR Cryptol. ePrint Arch. 2013: 616 (2013)
Coauthor Index
aka: Máire McLoone
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