VLDB 2026 Research / reviewers in the wild / expert
Oxana Poburinnaya
dblp:153/9899
· DBLP profile ↗
11ranked-venue papers
0as first author
4since 2021 · last 2023
—ORCID · none
Domains — the database's venue-derived domains; a paper can count in several
Security and privacy · 9 · 3 since 2021Theory of computation · 4 · 1 since 2021
| Year | Publication | Venue | Position |
|---|---|---|---|
| 2023 | Best of Both Worlds - Revisiting the Spymasters Double Agent Problem
Anasuya Acharya, Carmit Hazay, Oxana Poburinnaya, Muthuramakrishnan Venkitasubramaniam |
CRYPTO (1) | 3 |
| 2022 | Adaptively Secure Computation for RAM Programs
Laasya Bangalore, Rafail Ostrovsky, Oxana Poburinnaya, Muthuramakrishnan Venkitasubramaniam |
EUROCRYPT (2) | 3 |
| 2022 | COA-Secure Obfuscation and Applications
Ran Canetti, Suvradip Chakraborty, Dakshita Khurana, Nishant Kumar 0001, Oxana Poburinnaya, Manoj Prabhakaran 0001 |
EUROCRYPT (1) | 5 |
| 2022 | Equivocating Yao: Constant-Round Adaptively Secure Multiparty Computation in the Plain ModelabstractYao's circuit garbling scheme is one of the basic building blocks of cryptographic protocol design. Originally designed to enable two-message, two-party secure computation, the scheme has been extended in many ways and has innumerable applications. Still, a basic question has remained open throughout the years: Can the scheme be extended to guarantee security in the face of an adversary that corrupts both parties, adaptively, as the computation proceeds? We answer this question in the affirmative. We define a new type of symmetric encryption, called functionally equivocal encryption (FEE), and show that when Yao's scheme is implemented with FEE as the underlying encryption mechanism, it becomes secure against such adaptive adversaries. We then show how to implement FEE from any one-way function. Combining our scheme with noncommitting encryption, we obtain the first two-message, two-party computation protocol, and the first constant-round multiparty computation protocol, in the plain model, that are secure against semihonest adversaries who can adaptively corrupt all parties. Using standard techniques, this protocol can be made standalone secure against malicious corruptions in the plain model and universal composability secure in the common random string model. Additional applications include the first fully leakage-tolerant general multiparty computation protocol (with preprocessing), as well as a public-key version of FEE which can serve as a replacement for noncommitting encryption with better efficiency than what is possible for the latter. Ran Canetti, Oxana Poburinnaya, Muthuramakrishnan Venkitasubramaniam |
SIAM J. Comput. | 2 |
| 2020 | Secret-Shared Shuffle
Melissa Chase, Esha Ghosh, Oxana Poburinnaya |
ASIACRYPT (3) | 3 |
| 2020 | Fully Deniable Interactive Encryption
Ran Canetti, Sunoo Park, Oxana Poburinnaya |
CRYPTO (1) | 3 |
| 2020 | Towards Multiparty Computation Withstanding Coercion of All Parties
Ran Canetti, Oxana Poburinnaya |
TCC (2) | 2 |
| 2020 | SANNS: Scaling Up Secure Approximate k-Nearest Neighbors Search
Hao Chen 0030, Ilaria Chillotti, Yihe Dong, Oxana Poburinnaya, Ilya P. Razenshteyn, M. Sadegh Riazi |
USENIX Security Symposium | 4 |
| 2017 | Optimal-Rate Non-Committing Encryption
Ran Canetti, Oxana Poburinnaya, Mariana Raykova 0001 |
ASIACRYPT (3) | 2 |
| 2017 | Equivocating Yao: constant-round adaptively secure multiparty computation in the plain modelabstractYao's circuit garbling scheme is one of the basic building blocks of cryptographic protocol design. Originally designed to enable two-message, two-party secure computation, the scheme has been extended in many ways and has innumerable applications. Still, a basic question has remained open throughout the years: Can the scheme be extended to guarantee security in the face of an adversary that corrupts both parties, adaptively, as the computation proceeds? Ran Canetti, Oxana Poburinnaya, Muthuramakrishnan Venkitasubramaniam |
STOC | 2 |
| 2015 | Adaptively Secure Two-Party Computation from Indistinguishability Obfuscation
Ran Canetti, Shafi Goldwasser, Oxana Poburinnaya |
TCC (2) | 3 |