38 citations · 137 across the 6 of their papers we have counts for
7 papers · 1 filter
Observation of microscopic confinement dynamics by a tunable topological -angle
Wei-Yong Zhang, Ying Liu, Yanting Cheng +14
The topological -angle is central to the understanding of a plethora of phenomena in condensed matter and high-energy physics such as the strong CP problem, dynamical quantum to…
Interrelated Thermalization and Quantum Criticality in a Lattice Gauge Simulator
Han-Yi Wang, Wei-Yong Zhang, Zhi-Yuan Yao +7
Gauge theory and thermalization are both foundations of physics and nowadays are both topics of essential importance for modern quantum science and technology. Simulating lattice g…
Functional building blocks for scalable multipartite entanglement in optical lattices
Wei-Yong Zhang, Ming-Gen He, Hui Sun +20
Featuring excellent coherence and operated parallelly, ultracold atoms in optical lattices form a competitive candidate for quantum computation. For this, a massive number of paral…
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…
Realization of a Bosonic Antiferromagnet
Hui Sun, Bing Yang, Han-Yi Wang +5
Quantum antiferromagnets are of broad interest in condensed matter physics as they provide a platform for studying exotic many-body states including spin liquids and high-temperatu…
Observation of gauge invariance in a 71-site Bose-Hubbard quantum simulator
Bing Yang, Hui Sun, Robert Ott +6
The modern description of elementary particles, as formulated in the Standard Model of particle physics, is built on gauge theories. Gauge theories implement fundamental laws of ph…