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20242026
most citedQuantifying Quantum Computational Advantage on a Processor of Ultracold Atoms

9 citations · 9 across the 1 of their papers we have counts for

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5 papers

cond-mat.quant-gas20269 cited

Quantifying Quantum Computational Advantage on a Processor of Ultracold Atoms

Yong-Guang Zheng, Ying-Chao Shen, Wei-Yong Zhang +15

Nonequilibrium dynamics of quantum many-body systems is challenging for classical computing, providing opportunities for demonstrating practical quantum computational advantage wit…

cond-mat.quant-gas2025

An Orbit-qubit Quantum Processor of Ultracold Atoms

Ming-Gen He, Wei-Yong Zhang, Zhen-Sheng Yuan +1

It is challenging to build scalable quantum processors capable of both parallel control and local operation. As a promising platform to overcome this challenge, optical lattices of…

physics.optics2024

Spatial Optical Simulator for Classical Statistical Models

Song-Tao Yu, Ming-Gen He, Sheng Fang +2

Optical simulators for the Ising model have demonstrated great promise for solving challenging problems in physics and beyond. Here, we develop a spatial optical simulator for a va…

cond-mat.quant-gas2024

String breaking mechanism in a lattice Schwinger model simulator

Ying Liu, Wei-Yong Zhang, Zi-Hang Zhu +3

String breaking is a fundamental concept in gauge theories, describing the decay of a flux string connecting two charges through the production of particle-antiparticle pairs. This…

cond-mat.quant-gas2024

Probing false vacuum decay on a cold-atom gauge-theory quantum simulator

Zi-Hang Zhu, Ying Liu, Gianluca Lagnese +9

In the context of quantum electrodynamics, the decay of false vacuum leads to the production of electron-positron pair, a phenomenon known as the Schwinger effect. In practical exp…