Justin Raizes

dblp:230/8394 · DBLP profile ↗
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11ranked-venue papers
0as first author
11since 2021 · last 2026
0009-0002-7197-2643ORCID · corroborated

Domains — the database's venue-derived domains; a paper can count in several

Security and privacy · 7 · 7 since 2021Theory of computation · 5 · 5 since 2021
YearPublicationVenuePosition
2026 A New Approach to Arguments of Quantum Knowledge
James Bartusek, Ruta Jawale, Justin Raizes, Kabir Tomer
CRYPTO (9)3
2026 How to Delete Without a Trace: Certified Deniability in a Quantum World
Alper Çakan, Vipul Goyal, Justin Raizes
CRYPTO (5)3
2026 Proofs of No Intrusion
Vipul Goyal, Justin Raizes
EUROCRYPT (1)2
2025 Hard Quantum Extrapolations in Quantum Cryptography
Luowen Qian, Justin Raizes, Mark Zhandry
EUROCRYPT (7)2
2025 Quantum One-Time Programs, Revisited
Aparna Gupte, Jiahui Liu 0003, Justin Raizes, Bhaskar Roberts, Vinod Vaikuntanathan
STOC3
2024 Secret Sharing with Certified Deletion
James Bartusek, Justin Raizes
CRYPTO (7)2
2024 Software with Certified Deletion
James Bartusek, Vipul Goyal, Dakshita Khurana, Giulio Malavolta, Justin Raizes, Bhaskar Roberts
EUROCRYPT (4)5
2024 Unclonable Commitments and Proofs
Vipul Goyal, Giulio Malavolta, Justin Raizes
TCC (3)3
2023 Asynchronous Multi-Party Quantum Computation
Vipul Goyal, Chen-Da Liu-Zhang, Justin Raizes, João Ribeiro 0002
ITCS3
2022 Interaction-Preserving Compilers for Secure Computation
abstract
In this work we consider the following question: What is the cost of security for multi-party protocols? Specifically, given an insecure protocol where parties exchange (in the worst case) Γ bits in N rounds, is it possible to design a secure protocol with communication complexity close to Γ and N rounds? We systematically study this problem in a variety of settings and we propose solutions based on the intractability of different cryptographic problems. For the case of two parties we design an interaction-preserving compiler where the number of bits exchanged in the secure protocol approaches Γ and the number of rounds is exactly N, assuming the hardness of standard problems over lattices. For the more general multi-party case, we obtain the same result assuming either (i) an additional round of interaction or (ii) the existence of extractable witness encryption and succinct non-interactive arguments of knowledge. As a contribution of independent interest, we construct the first multi-key fully homomorphic encryption scheme with message-to-ciphertext ratio (i.e., rate) of 1 - o(1), assuming the hardness of the learning with errors (LWE) problem. We view our work as a support for the claim that, as far as interaction and communication are concerned, one does not need to pay a significant price for security in multi-party protocols.
Nico Döttling, Vipul Goyal, Giulio Malavolta, Justin Raizes
ITCS4
2022 Time-Traveling Simulators Using Blockchains and Their Applications
Vipul Goyal, Justin Raizes, Pratik Soni
ITCS2