2
collaborators
2026–2026
years active
Contributions
QIP QCrypt TQC talk poster presenter award · △program ◇steering ○organizing · filled = chair
1 Talk
| Title | Conference | Type | Co-authors |
|---|---|---|---|
| Non Interactive MPC, (Quantumly) Revisited | QCRYPT 2026 | regular | Prabhanjan Ananth, Aparna Gupte |
Classical non-interactive secure computation, despite being extensive studied, suffers from an inherent barrier: adversaries can learn the entire residual function via resetting attacks. We investigate whether quantum resources can circumvent this barrier and restrict adversarial leakage. Our results are as follows: 1. Definitions: We introduce new security definitions for the one-message MPC and 2PC settings that restrict the amount of adversarial leakage compared to prior classical definitions. 2. MPC: There exist information-theoretically secure one-message multi-party computation protocols in the oracle model in both the quantum pre-processing and classical pre-processing settings. 3. 2PC: There exist semi-honest secure one-message two-party computation for (randomized) pseudorandom functionalities in the plain model based on LWE and maliciously secure one-message two-party computation for (randomized) constrained functionalities in the CRS model based on iO. Prior work by [Gupte, Liu, Raizes, Roberts and, Vaikuntanathan STOC 2025] achieved semi-honest security based on iO. Our results demonstrate the power of quantum information to circumvent barriers in classical secure computation. |
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Collaborators
| Co-author | Joint talks |
|---|---|
| Aparna Gupte | 1 |
| Prabhanjan Ananth | 1 |