most citedDigital quantum magnetism on a trapped-ion quantum computer

5 citations · 5 across the 1 of their papers we have counts for

collaborators

6 papers

quant-ph20265 cited

Digital quantum magnetism on a trapped-ion quantum computer

Reza Haghshenas, Eli Chertkov, Michael Mills +56

Digital quantum matter -- realized when discrete quantum gates approximate continuous time evolution -- is susceptible to heating into chaotic, structureless states. If digitizatio…

quant-ph2026

Computing with many encoded logical qubits beyond break-even

Shival Dasu, Matthew DeCross, Andrew Y. Guo +42

High-rate quantum error correcting (QEC) codes encode many logical qubits in a given number of physical qubits, making them promising candidates for quantum computation. Implementi…

quant-ph2026

Superconducting pairing correlations on a trapped-ion quantum computer

Etienne Granet, Sheng-Hsuan Lin, Kevin Hémery +31

The Fermi-Hubbard model is the starting point for the simulation of many strongly correlated materials, including high-temperature superconductors, whose modelling is a key motivat…

quant-ph2025

Error detection without post-selection in adaptive quantum circuits

Eli Chertkov, Andrew C. Potter, David Hayes +1

Current quantum computers are limited by errors, but have not yet achieved the scale required to benefit from active error correction in large computations. We show how simulations…

quant-ph2025

Breaking even with magic: demonstration of a high-fidelity logical non-Clifford gate

Shival Dasu, Simon Burton, Karl Mayer +7

Encoding quantum information to protect it from errors is essential for performing large-scale quantum computations. Performing a universal set of quantum gates on encoded states d…

quant-ph2025

Entanglement renormalization circuits for Gaussian Fermion States

Sing Lam Wong, Andrew C. Potter

The simulation of entangled ground-states of quantum materials remains challenging for classical computational methods in more than one spatial dimension, and is a prime target for…