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Tony Metger
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2020 – today
- 2024
- [c8]Adam Bouland, Bill Fefferman, Soumik Ghosh, Tony Metger, Umesh V. Vazirani, Chenyi Zhang, Zixin Zhou:
Public-Key Pseudoentanglement and the Hardness of Learning Ground State Entanglement Structure. CCC 2024: 21:1-21:23 - [c7]Tony Metger, Alexander Poremba, Makrand Sinha, Henry Yuen:
Simple Constructions of Linear-Depth t-Designs and Pseudorandom Unitaries. FOCS 2024: 485-492 - [c6]Tony Metger, Anand Natarajan, Tina Zhang:
Succinct Arguments for QMA from Standard Assumptions via Compiled Nonlocal Games. FOCS 2024: 1193-1201 - [i15]Tony Metger, Alexander Poremba, Makrand Sinha, Henry Yuen:
Pseudorandom unitaries with non-adaptive security. CoRR abs/2402.14803 (2024) - [i14]Tony Metger, Alexander Poremba, Makrand Sinha, Henry Yuen:
Simple constructions of linear-depth t-designs and pseudorandom unitaries. CoRR abs/2404.12647 (2024) - [i13]Tony Metger, Anand Natarajan, Tina Zhang:
Succinct arguments for QMA from standard assumptions via compiled nonlocal games. CoRR abs/2404.19754 (2024) - [i12]Petia Arabadjieva, Alexandru Gheorghiu, Victor Gitton, Tony Metger:
Single-Round Proofs of Quantumness from Knowledge Assumptions. CoRR abs/2405.15736 (2024) - [i11]Chi-Fang Chen, Jeongwan Haah, Jonas Haferkamp, Yunchao Liu, Tony Metger, Xinyu Tan:
Incompressibility and spectral gaps of random circuits. CoRR abs/2406.07478 (2024) - [i10]Tony Metger, Alexander Poremba, Makrand Sinha, Henry Yuen:
Pseudorandom unitaries with non-adaptive security. IACR Cryptol. ePrint Arch. 2024: 302 (2024) - 2023
- [j3]Anurag Anshu, Tony Metger:
Concentration bounds for quantum states and limitations on the QAOA from polynomial approximations. Quantum 7: 999 (2023) - [c5]Tony Metger, Henry Yuen:
stateQIP = statePSPACE. FOCS 2023: 1349-1356 - [c4]Alexandru Gheorghiu, Tony Metger, Alexander Poremba:
Quantum Cryptography with Classical Communication: Parallel Remote State Preparation for Copy-Protection, Verification, and More. ICALP 2023: 67:1-67:17 - [c3]Anurag Anshu, Tony Metger:
Concentration Bounds for Quantum States and Limitations on the QAOA from Polynomial Approximations. ITCS 2023: 5:1-5:8 - [i9]Tony Metger, Henry Yuen:
stateQIP = statePSPACE. CoRR abs/2301.07730 (2023) - [i8]John Bostanci, Yuval Efron, Tony Metger, Alexander Poremba, Luowen Qian, Henry Yuen:
Unitary Complexity and the Uhlmann Transformation Problem. CoRR abs/2306.13073 (2023) - [i7]Adam Bouland, Bill Fefferman, Soumik Ghosh, Tony Metger, Umesh V. Vazirani, Chenyi Zhang, Zixin Zhou:
Public-key pseudoentanglement and the hardness of learning ground state entanglement structure. CoRR abs/2311.12017 (2023) - 2022
- [j2]Hendrik Poulsen Nautrup, Tony Metger, Raban Iten, Sofiène Jerbi, Lea M. Trenkwalder, Henrik Wilming, Hans J. Briegel, Renato Renner:
Operationally meaningful representations of physical systems in neural networks. Mach. Learn. Sci. Technol. 3(4): 45025 (2022) - [c2]Tony Metger, Omar Fawzi, David Sutter, Renato Renner:
Generalised entropy accumulation. FOCS 2022: 844-850 - [i6]Alexandru Gheorghiu, Tony Metger, Alexander Poremba:
Quantum cryptography with classical communication: parallel remote state preparation for copy-protection, verification, and more. CoRR abs/2201.13445 (2022) - [i5]Tony Metger, Omar Fawzi, David Sutter, Renato Renner:
Generalised entropy accumulation. CoRR abs/2203.04989 (2022) - [i4]Anurag Anshu, Tony Metger:
Concentration bounds for quantum states and limitations on the QAOA from polynomial approximations. CoRR abs/2209.02715 (2022) - [i3]Alexandru Gheorghiu, Tony Metger, Alexander Poremba:
Quantum cryptography with classical communication: parallel remote state preparation for copy-protection, verification, and more. IACR Cryptol. ePrint Arch. 2022: 122 (2022) - 2021
- [j1]Tony Metger, Thomas Vidick:
Self-testing of a single quantum device under computational assumptions. Quantum 5: 544 (2021) - [c1]Tony Metger, Thomas Vidick:
Self-Testing of a Single Quantum Device Under Computational Assumptions. ITCS 2021: 19:1-19:12 - 2020
- [i2]Hendrik Poulsen Nautrup, Tony Metger, Raban Iten, Sofiène Jerbi, Lea M. Trenkwalder, Henrik Wilming, Hans J. Briegel, Renato Renner:
Operationally meaningful representations of physical systems in neural networks. CoRR abs/2001.00593 (2020)
2010 – 2019
- 2018
- [i1]Raban Iten, Tony Metger, Henrik Wilming, Lídia del Rio, Renato Renner:
Discovering physical concepts with neural networks. CoRR abs/1807.10300 (2018)
Coauthor Index
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last updated on 2024-12-10 21:42 CET by the dblp team
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