8
collaborators
2020–2024
years active
Contributions
QIP QCrypt TQC talk poster presenter award · △program ◇steering ○organizing · filled = chair
1 Talk
| Title | Conference | Type | Co-authors |
|---|---|---|---|
| Simpler Proofs of Quantumness | TQC 2020 | regular ▸ presenter | Zvika Brakerski, Umesh Vazirani, Thomas Vidick |
A proof of quantumness is a method for provably demonstrating (to a classical verifier) that a quantum device can perform computational tasks that a classical device with comparable resources cannot. Providing a proof of quantumness is the first step towards constructing a useful quantum computer. There are currently three approaches for exhibiting proofs of quantumness: (i) Inverting a classically-hard one-way function (e.g.\ using Shor’s algorithm). This seems technologically out of reach. (ii) Sampling from a classically-hard-to-sample distribution (e.g.\ BosonSampling). This may be within reach of near-term experiments, but for all such tasks known verification requires exponential time. (iii) Interactive protocols based on cryptographic assumptions. The use of a trapdoor scheme allows for efficient verification, and implementation seems to require much less resources than (i), yet still more than (ii). In this work we propose a significant simplification to approach (iii) by employing the random oracle heuristic. (We note that we do not apply the Fiat-Shamir paradigm.) We give a two-message (challenge-response) proof of quantumness based on any trapdoor claw-free function. In contrast to earlier proposals we do not need an adaptive hard-core bit property. This allows the use of smaller security parameters and more diverse computational assumptions (such as Ring Learning with Errors), significantly reducing the quantum computational effort required for a successful demonstration. |
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2 Posters
| Title | Conference | Co-authors |
|---|---|---|
| Quantum Polynomial Hierarchies: Collapses, Karp-Lipton, and More | QIP 2024 | Avantika Agarwal, Sevag Gharibian, Sabee Grewal, Dorian Rudolph, Justin Yirka |
| Quantum Polynomial Hierarchies: Collapses, Karp-Lipton, and More | TQC 2024 | Avantika Agarwal, Sevag Gharibian, Sabee Grewal, Dorian Rudolph, Justin Yirka |
Collaborators
| Co-author | Joint talks |
|---|---|
| Avantika Agarwal | 2 |
| Dorian Rudolph | 2 |
| Justin Yirka | 2 |
| Sabee Grewal | 2 |
| Sevag Gharibian | 2 |
| Thomas Vidick | 1 |
| Umesh Vazirani | 1 |
| Zvika Brakerski | 1 |