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20182022
most citedEfficient quantum implementation of 2+1 U(1) lattice gauge theories with Gauss law constraints

8 citations · 15 across the 4 of their papers we have counts for

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quant-ph20228 cited

Efficient quantum implementation of 2+1 U(1) lattice gauge theories with Gauss law constraints

Christopher Kane, Dorota M. Grabowska, Benjamin Nachman +1

The study of real-time evolution of lattice quantum field theories using classical computers is known to scale exponentially with the number of lattice sites. Due to a fundamentall…

quant-ph20222 cited

Report of the Snowmass 2021 Theory Frontier Topical Group on Quantum Information Science

Simon Catterall, Roni Harnik, Veronika E. Hubeny +12

We summarize current and future applications of quantum information science to theoretical high energy physics. Three main themes are identified and discussed; quantum simulation,…

quant-ph20215 cited

Practical considerations for the preparation of multivariate Gaussian states on quantum computers

Christian W. Bauer, Plato Deliyannis, Marat Freytsis +1

We provide explicit circuits implementing the Kitaev-Webb algorithm for the preparation of multi-dimensional Gaussian states on quantum computers. While asymptotically efficient du…

quant-ph2021

Quantum Gate Pattern Recognition and Circuit Optimization for Scientific Applications

Wonho Jang, Koji Terashi, Masahiko Saito +7

There is no unique way to encode a quantum algorithm into a quantum circuit. With limited qubit counts, connectivities, and coherence times, circuit optimization is essential to ma…

quant-ph2020

Readout Rebalancing for Near Term Quantum Computers

Rebecca Hicks, Christian W. Bauer, Benjamin Nachman

Readout errors are a significant source of noise for near term intermediate scale quantum computers. Mismeasuring a qubit as a 1 when it should be 0 occurs much less often than mis…

quant-ph2020

Resource Efficient Zero Noise Extrapolation with Identity Insertions

Andre He, Benjamin Nachman, Wibe A. de Jong +1

In addition to readout errors, two-qubit gate noise is the main challenge for complex quantum algorithms on noisy intermediate-scale quantum (NISQ) computers. These errors are a si…