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利用振荡磁场将原子结合成通用二聚体。

Association of atoms into universal dimers using an oscillating magnetic field.

机构信息

Department of Physics, The Ohio State University, Columbus, Ohio 43210, USA.

出版信息

Phys Rev Lett. 2015 Mar 13;114(10):103002. doi: 10.1103/PhysRevLett.114.103002. Epub 2015 Mar 11.

Abstract

In a system of ultracold atoms near a Feshbach resonance, pairs of atoms can be associated into universal dimers by an oscillating magnetic field with a frequency near that determined by the dimer binding energy. We present a simple expression for the transition rate that takes into account many-body effects through a transition matrix element of the contact. In a thermal gas, the width of the peak in the transition rate as a function of the frequency is determined by the temperature. In a dilute Bose-Einstein condensate of atoms, the width is determined by the inelastic scattering rates of a dimer with zero-energy atoms. Near an atom-dimer resonance, there is a dramatic increase in the width from inelastic atom-dimer scattering and from atom-atom-dimer recombination. The recombination contribution provides a signature for universal tetramers that are Efimov states consisting of two atoms and a dimer.

摘要

在接近费希巴赫共振的超冷原子体系中,通过频率接近由二聚体结合能决定的振荡磁场,可以将原子对关联成通用二聚体。我们提出了一个简单的跃迁速率表达式,通过接触的跃迁矩阵元考虑了多体效应。在热气体中,跃迁速率随频率的峰值宽度由温度决定。在原子玻色-爱因斯坦凝聚体的稀相中,宽度由零能原子的二聚体非弹性散射速率决定。在原子-二聚体共振附近,由于非弹性原子-二聚体散射和原子-原子-二聚体复合,宽度会急剧增加。复合贡献为由两个原子和一个二聚体组成的 Efimov 状态的通用四聚体提供了特征。

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