Fractional quantum anomalous Hall phase for Raman superarray of Rydberg
atoms
- URL: http://arxiv.org/abs/2302.13104v2
- Date: Mon, 26 Feb 2024 14:04:21 GMT
- Title: Fractional quantum anomalous Hall phase for Raman superarray of Rydberg
atoms
- Authors: Ting-Fung Jeffrey Poon, Xin-Chi Zhou, Bao-Zong Wang, Tian-Hua Yang and
Xiong-Jun Liu
- Abstract summary: Rydberg atom arrays offer promising platforms for quantum simulation of correlated quantum matter.
This work proposes a novel stripe-lattice model with Raman superarray of Rydberg atoms to realize bosonic fractional quantum anomalous Hall phase.
- Score: 1.8749305679160366
- License: http://arxiv.org/licenses/nonexclusive-distrib/1.0/
- Abstract: Rydberg atom arrays offer promising platforms for quantum simulation of
correlated quantum matter and raise great interests. This work proposes a novel
stripe-lattice model with Raman superarray of Rydberg atoms to realize bosonic
fractional quantum anomalous Hall (FQAH) phase. Two types of Rydberg states,
arranged in a supperarray configuration and with Raman-assisted dipole-exchange
couplings, are implemented to realize a minimal QAH model for hard-core bosons
populated into a topological flat band with large bulk gap under proper tunable
experimental condition. With this the bosonic FQAH phase can be further
achieved and probed feasibly. In particular, a novel quench protocol is
proposed to probe the fractionalized excitations by measuring the correlated
quench dynamics featured by fractional charge tunneling between bulk and chiral
edge modes in the open boundary.
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