Publication | Open Access
Theory of Subradiant States of a One-Dimensional Two-Level Atom Chain
164
Citations
40
References
2019
Year
Quantum ScienceQuantum Lattice SystemEngineeringPhysicsMany-body Quantum PhysicNatural SciencesApplied PhysicsUltracold AtomDisordered Quantum SystemAtomic PhysicsSubradiant StatesUnexpected Fermionic CharacterQuantum TheoryUniversal ScalingQuantum ChemistryBose-einstein CondensationFermionic BehaviorMany-body Problem
Recently, the subradiant states of one-dimensional two-level atom chains coupled to light modes were found to have decay rates obeying a universal scaling, and an unexpected fermionic character of the multiply excited subradiant states was discovered. In this Letter, we theoretically obtain the singly excited subradiant states, and by eliminating the superradiant modes, we demonstrate a relation between the multiply excited subradiant states and the Tonks-Girardeau limit of the Lieb-Liniger model which explains the fermionic behavior. In addition, we identify a new family of subradiant states with correlations different from the fermionic ansatz.
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