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20162026
most citedTunable Confinement-Deconfinement Transition in an Ultracold Atom Quantum Simulator

36 citations · 117 across the 7 of their papers we have counts for

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10 papers · 1 filter

cond-mat.quant-gas2024★ 33 cited

Emergent Gauge Theory in Rydberg Atom Arrays

Yanting Cheng, Hui Zhai

Rydberg atom arrays have emerged as a novel platform exhibiting rich quantum many-body physics and offering promise for universal quantum computation. The Rydberg blockade effect p…

cond-mat.quant-gas2023★ 9 cited

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…

cond-mat.quant-gas2022★ 36 cited

Tunable Confinement-Deconfinement Transition in an Ultracold Atom Quantum Simulator

Yanting Cheng, Shang Liu, Wei Zheng +2

The one-dimensional lattice Schwinger model has recently been realized by using bosons in optical lattices. This model contains both confinement and deconfinement phases, whose pha…

cond-mat.quant-gas2021

Variational Approach to Quantum Spin Liquid in a Rydberg Atom Simulator

Yanting Cheng, Chengshu Li, Hui Zhai

Recently the Rydberg blockade effect has been utilized to realize quantum spin liquid on the kagome lattice. Evidence of quantum spin liquid has been obtained experimentally by dir…

cond-mat.quant-gas2021

Asymmetric Conductivity of the Kondo Effect in Cold Atomic Systems

Yanting Cheng, Xin Chen, Ren Zhang

Motivated by recent theoretical and experimental advances in quantum simulations using alkaline earth(AE) atoms, we put forward a proposal to detect the Kondo physics in a cold ato…

cond-mat.quant-gas2020

Many-body Dynamics with Time-dependent Interaction

Yanting Cheng, Zhe-Yu Shi

Recent advances in optical Feshbach resonance technique have enabled the experimental investigation of atomic gases with time-dependent interaction. In this work, we study the many…