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冷原子物理中的一维少体问题

刘彦霞 张云波

物理学报2019,Vol.68Issue(4):30-43,14.
物理学报2019,Vol.68Issue(4):30-43,14.DOI:10.7498/aps.68.20181993

冷原子物理中的一维少体问题

Review of one-dimensional few-body systems in ultracold atomic physics

刘彦霞 1张云波2

作者信息

  • 1. 山西大学, 理论物理研究所, 太原 030006
  • 2. 中国科学院物理研究所, 北京 100190
  • 折叠

摘要

Abstract

We review some recent theoretical and experimental developments of one-dimensional few-body problems in ultracold atomic system. The experiments have so far realized the deterministic loading of few atoms in the ground state of a potential well, the observation of tunneling dynamics out of the metastable trap controlled by a magnetic gradient for a repulsively or attractively interacting system, the preparation of two fermionic atoms in an isolated double-well potential with a full control over the quantum state of the system, the formation of a Fermi sea by studying quasi-one-dimensional systems of ultracold atoms consisting of a single impurity interacting with an increasing number of identical fermions, and the deterministic preparation of antiferromagnetic Heisenberg spin chains consisting of up to four fermionic atoms in a one-dimensional trap. These achievements make the ultracold atoms an ideal platform to study many-body physics in a bottom-up approach, i.e., one starts from the fundamental building block of the system and observes the emergence of many-body effects by adding atoms one by one into the system. Corresponding theoretical models have been developed to explain the experimental data, to tackle the crossover boundary between few and many particles, and even explore the solvability and integrability of the models, especially the energy spectrum of interacting few atoms such as two atoms in a harmonic trap, two heteronuclear atoms of unequal mass in a ring trap, and two atoms in a δ-barrier split double well potential. After a brief review of Bethe-Ansatz method, a theory for the tunneling of one atom out of a trap containing two interacting cold atoms is developed based on the calculation of the quasiparticle wave function, and the tunneling dynamics of two atoms starting from the NOON state is explored from the exactly solved model of -barrier split double well based on a Bethe ansatz type hypothesis of the wave functions. It was shown that the spectroscopy and spin dynamics for strongly interacting few atoms of spin-1/2 and spin-1 can be described by effective spin chain Hamiltonians, which serves as a useful and efficient tool to study the quantum magnetism with clod atoms.

关键词

冷原子物理/一维系统/少体问题/精确可解模型

Key words

ultracold atom physics/one dimensioanl system/few-body problem/exactly solvable model

引用本文复制引用

刘彦霞,张云波..冷原子物理中的一维少体问题[J].物理学报,2019,68(4):30-43,14.

基金项目

国家自然科学基金(批准号: 11674201, 11474189) 资助的课题. (批准号: 11674201, 11474189)

物理学报

OA北大核心CSCDCSTPCDSCI

1000-3290

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