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Superconducting Qubits

Spontaneous lateral atomic recoil force close to a photonic topological material

arXiv
Authors: S. Ali Hassani Gangaraj, George W. Hanson, Mauro Antezza, Mário G. Silveirinha

Year

2017

Paper ID

25117

Status

Preprint

Abstract Read

~2 min

Abstract Words

171

Citations

N/A

Abstract

We investigate the quantum recoil force acting on an excited atom close to the surface of a nonreciprocal photonic topological insulator (PTI). The main atomic emission channel is the unidirectional surface-plasmon propagating at the PTI-vacuum interface, and we show that it enables a spontaneous lateral recoil force that scales at short distance as 1/d4, where d is the atom-PTI separation. Remarkably, the sign of the recoil force is polarization and orientation-independent, and it occurs in a translation-invariant homogeneous system in thermal equilibrium. Surprisingly, the recoil force persists for very small values of the gyration pseudovector, which, for a biased plasma, corresponds to very low cyclotron frequencies. The ultra-strong recoil force is rooted on the quasi-hyperbolic dispersion of the surface-plasmons. We consider both an initially excited atom and a continuous pump scenario, the latter giving rise to a continuous lateral force whose direction can be changed at will by simply varying the orientation of the biasing magnetic field. Our predictions may be tested in experiments with cold Rydberg atoms and superconducting qubits.

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  • This paper contributes to the Superconducting Qubits research area in the Quantum Articles archive.
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  • We investigate the quantum recoil force acting on an excited atom close to the surface of a nonreciprocal photonic topological insulator (PTI).

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