7
talks
3
committee roles
0
leadership roles
2018–2026
years active
Contributions
QIP QCrypt TQC presenter award · △program ◇steering ○organising □local · filled = chair
Talks
| Title | Conference | Type | Co-authors |
|---|---|---|---|
| A distribution testing oracle separating QMA and QCMA | QIP 2024 | regular | ▸Anand Natarajan |
| NLTS Hamiltonians from good quantum codes | QIP 2023 | plenary_long ▸ presenter | Anurag Anshu, Nikolas Breuckmann |
| Quantum search-to-decision reductions and the state synthesis problem | QIP 2022 | regular ▸ presenter | Sandy Irani, Anand Natarajan, Sujit Rao, Henry Yuen |
| Circuit lower bounds for low-energy states of code Hamiltonians | QIP 2021 | regular | Anurag Anshu |
Abstract The No Low-energy Trivial States (NLTS) conjecture of Freedman and Hastings (Quantum Information and Computation, 2014) -- which posits the existence of a local Hamiltonian with a super-constant circuit lower bound on the complexity of all low-energy states -- identifies a fundamental obstacle to the resolution of the quantum PCP conjecture. In this work, we provide new techniques based on entropic and local indistinguishability arguments that prove circuit lower bounds for all the low-energy states of local Hamiltonians arising from quantum error-correcting codes. For local Hamiltonians arising from nearly linear-rate and polynomial-distance LDPC stabilizer codes, we prove super-constant circuit lower bounds for the complexity of all states of energy o(n) (which can be viewed as an almost linear NLTS theorem). Such codes are known to exist and are not necessarily locally-testable, a property previously suspected to be essential for the NLTS conjecture. Curiously, such codes can also be constructed on a two-dimensional lattice, showing that low-depth states cannot accurately approximate the ground-energy in physically relevant systems. |
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| Good approximate quantum LDPC codes from spacetime circuit Hamiltonians | QIP 2019 | regular | Thomas Bohdanowicz, ▸Elizabeth Crosson, Henry Yuen |
| Quantum Supremacy and the Complexity of Random Circuit Sampling | QIP 2019 | regular | Adam Bouland, ▸Bill Fefferman, Umesh Vazirani |
| Approximate low-weight check codes and circuit lower bounds for noisy ground states | TQC 2018 | regular | Umesh Vazirani, Henry Yuen |
Committee service
| Conference | Committee | Position | Title |
|---|---|---|---|
| QIP 2026 | PC | member | — |
| QIP 2024 | PC | member | — |
| QIP 2023 | PC | member | — |
Collaborators
| Co-author | Joint talks |
|---|---|
| Henry Yuen | 3 |
| Anand Natarajan | 2 |
| Anurag Anshu | 2 |
| Umesh Vazirani | 2 |
| Adam Bouland | 1 |
| Bill Fefferman | 1 |
| Elizabeth Crosson | 1 |
| Nikolas Breuckmann | 1 |
| Sandy Irani | 1 |
| Sujit Rao | 1 |
| Thomas Bohdanowicz | 1 |