activity
20192026
most citedConstructive Post-Quantum Reductions

2 citations · 5 across the 10 of their papers we have counts for

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16 papers · 1 filter

quant-ph2026

Generic Number-of-Copies Amplification for Pseudorandom States

Zvika Brakerski, Miri Zenilman

We show that any quantum pseudorandom state that is secure against single-copy distinguishers, i.e. a -PRS, can be amplified to -copy security, i.e. to a -PRS, without add…

quant-ph2026

On Scalable Pseudorandom Unitaries and the Unitary Synthesis Problem

Zvika Brakerski, Henry Yuen

We consider the task of constructing pseudorandom unitaries (PRUs) with scalable security, i.e. families in which the security parameter may vary independently of the dimension (or…

quant-ph2025

Syndrome aware mitigation of logical errors

Dorit Aharonov, Yosi Atia, Eyal Bairey +6

Broad applications of quantum computers will require error correction (EC). However, hardware roadmaps indicate that physical qubit numbers will remain limited in the foreseeable f…

quant-ph2025

Reliable high-accuracy error mitigation for utility-scale quantum circuits

Dorit Aharonov, Ori Alberton, Itai Arad +36

Error mitigation is essential for unlocking the full potential of quantum algorithms and accelerating the timeline toward quantum advantage. As quantum hardware progresses to push…

quant-ph2025

State-Based Classical Shadows

Zvika Brakerski, Nir Magrafta, Tomer Solomon

Classical Shadow Tomography (Huang, Kueng and Preskill, Nature Physics 2020) is a method for creating a classical snapshot of an unknown quantum state, which can later be used to p…

quant-ph20251 cited

On the Importance of Error Mitigation for Quantum Computation

Dorit Aharonov, Ori Alberton, Itai Arad +13

Quantum error mitigation (EM) is a family of hybrid quantum-classical methods for eliminating or reducing the effect of noise and decoherence on quantum algorithms run on quantum h…