Feshbach resonance in a synthetic non-Abelian gauge field

Shenoy, Vijay B. (2014) Feshbach resonance in a synthetic non-Abelian gauge field Physical Review A: Atomic, Molecular, and Optical Physics and Quantum Information, 89 (4). Article ID 043618. ISSN 2469-9926

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Official URL: https://journals.aps.org/pra/abstract/10.1103/Phys...

Related URL: http://dx.doi.org/10.1103/PhysRevA.89.043618

Abstract

We study the Feshbach resonance of spin-1/2 particles in a uniform synthetic non-Abelian gauge field that produces spin-orbit coupling and constant spin potentials. We develop a renormalizable quantum field theory including the closed-channel boson which engenders the resonance. We show that the gauge field shifts the Feshbach field where the low-energy scattering length diverges. In addition the Feshbach field is shown to depend on the center-of-mass momentum of the particles. For high-symmetry gauge fields which produce a Rashba spin coupling, we show that the system supports two bound states over a regime of magnetic fields when the background scattering length is negative and the resonance width is comparable to the energy scale of the spin-orbit coupling. We discuss interesting consequences useful for future theoretical and experimental studies, even while our predictions are in agreement with recent experiments.

Item Type:Article
Source:Copyright of this article belongs to American Physical Society.
ID Code:106204
Deposited On:01 Feb 2018 09:54
Last Modified:01 Feb 2018 09:54

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