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Debajyoti Das
Debajyoti Das
Verified email at esat.kuleuven.be - Homepage
Title
Cited by
Cited by
Year
cMix: Mixing with minimal real-time asymmetric cryptographic operations
D Chaum, D Das, F Javani, A Kate, A Krasnova, J De Ruiter, AT Sherman
International Conference on Applied Cryptography and Network Security, 557-578, 2017
114*2017
Anonymity trilemma: Strong anonymity, low bandwidth overhead, low latency-choose two
D Das, S Meiser, E Mohammadi, A Kate
2018 IEEE Symposium on Security and Privacy (SP), 108-126, 2018
1072018
Sortinghat: Efficient private decision tree evaluation via homomorphic encryption and transciphering
K Cong, D Das, J Park, HVL Pereira
Proceedings of the 2022 ACM SIGSAC Conference on Computer and Communications …, 2022
412022
On elapsed time consensus protocols
M Bowman, D Das, A Mandal, H Montgomery
Progress in Cryptology–INDOCRYPT 2021: 22nd International Conference on …, 2021
262021
Comprehensive Anonymity Trilemma: User Coordination is not enough
D Das, S Meiser, E Mohammadi, A Kate
Privacy Enhancing Technologies Symposium 2020 (3), 262-289, 2020
162020
Divide and funnel: a scaling technique for mix-networks
D Das, S Meiser, E Mohammadi, A Kate
37th IEEE Computer Security Foundations Symposium 2024 (2), 2024
42024
Panacea: non-interactive and stateless oblivious RAM
K Cong, D Das, G Nicolas, J Park
Cryptology ePrint Archive, 2023
42023
OrgAn: Organizational Anonymity with Low Latency
D Das, EV Mangipudi, A Kate
Privacy Enhancing Technologies Symposium 2022 (3), 2022
22022
Not all is lost for anonymity but quite a lot is. Coordination among users can help anonymity
D Das
HotPETs, 2019
22019
Blending Different Latency Traffic With Beta Mixing
IB Guirat, D Das, C Diaz
Privacy Enhancing Technologies Symposium 2024 (2), 2024
12024
Poster: Panacea---Stateless and Non-Interactive Oblivious RAM
K Cong, D Das, G Nicolas, J Park
Proceedings of the 2023 ACM SIGSAC Conference on Computer and Communications …, 2023
12023
Are continuous stop-and-go mixnets provably secure?
D Das, C Diaz, A Kiayias, T Zacharias
Cryptology ePrint Archive, 2023
2023
Fundamental Constraints and Provably Secure Constructions of Anonymous Communication Protocols
D Das
Purdue University, 2021
2021
Not all is lost for anonymity–but quite a lot is.
D Das, S Meiser, E Mohammadi, A Kate
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Articles 1–14