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Universal Efimov physics in three- and four-body collisions.

机译:三体和四体碰撞中的通用Efimov物理学。

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摘要

The Efimov effect plays a central role in few-body systems at ultracold temperature and has thus accelerated a lot of studies on its manifestation in the collisional stability of the quantum degenerate gases. Near broad Feshbach resonances, Efimov physics has been studied both theoretically and experimentally through the zero-energy scattering observables. We have extended the theoretical studies of Efimov physics to a much broader extent. In particular, we have investigated the three-body Efimov physics near narrow Feshbach resonances and have also identified the Efimov features beyond the zero temperature limit. We have found, near a narrow Feshbach resonance, the non-trivial contribution from both of the resonance width and the short-range physics to the three-body recombination and vibrational dimer relaxation. Remarkably, the collisional stability of the Feshbach molecules are found to be opposite to that near the broad resonances: an increased stability for molecules made by bosons and a decreased stability for those made by fermions. The universal physics observed near the narrow Feshbach resonances is further found not to be limited to the zero temperature observables. We have found that the general features of Efimov physics and those pertaining to a narrow resonance are manifested in different energy ranges above zero temperature. This opens the opportunity to observe Efimov physics by changing the collisional energy while keeping the atomic interaction fixed. The landscape of the universal Efimov physics is thus delineated in both of the interaction and the energy domain. We have also investigated Efimov physics in heteronuclear four-body systems where the complexity can be reduced by approximations. In particular, we have proposed ways for controllable production of the Efimov tri-atomic molecules by three-body or four-body recombinations involving four atoms. We have also confirmed the existence of four-body Efimov effect in a system of three heavy particles and one light particle, which has resolved a decade-long controversy on this topic. Finally, we have studied the collisional properties of four identical bosons in 1D, which is important to the experiments on the quantum gases confined in the 1D optical lattices.
机译:Efimov效应在超冷温度下的少数体系统中起着核心作用,因此加速了有关量子简并气体的碰撞稳定性表现形式的大量研究。在接近Feshbach共振的广泛范围内,已经通过零能量散射观测值对Efimov物理学进行了理论和实验研究。我们已将Efimov物理学的理论研究扩展到更广泛的范围。尤其是,我们研究了狭窄Feshbach共振附近的三体Efimov物理现象,并确定了Efimov的特征超出零温度极限。我们发现,在狭窄的Feshbach共振附近,共振宽度和短距离物理学对三体复合和振动二聚体弛豫的重要贡献。值得注意的是,发现Feshbach分子的碰撞稳定性与广泛共振附近的碰撞稳定性相反:玻色子制成的分子的稳定性增加,而费米子制成的分子的稳定性降低。进一步发现,在狭窄的Feshbach共振附近观察到的通用物理学不仅限于零温度观测值。我们已经发现,Efimov物理学的一般特征和与窄共振有关的特征表现在零温度以上的不同能量范围内。通过改变碰撞能量同时保持原子相互作用不变,这为观察Efimov物理学提供了机会。因此,在相互作用和能量域中都画出了通用的Efimov物理学领域。我们还研究了异核四体系统中的Efimov物理学,其中复杂性可以通过近似来降低。特别地,我们提出了通过涉及四个原子的三体或四体重组可控地产生Efimov三原子分子的方法。我们还证实了在由三个重粒子和一个轻粒子组成的系统中存在四体Efimov效应的问题,该问题解决了长达十年之久的争议。最后,我们研究了一维中四个相同玻色子的碰撞性质,这对于限制一维光学晶格中的量子气体的实验很重要。

著录项

  • 作者

    Wang, Yujun.;

  • 作者单位

    Kansas State University.;

  • 授予单位 Kansas State University.;
  • 学科 Physics Quantum.;Physics Theory.;Physics Atomic.;Physics Molecular.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 213 p.
  • 总页数 213
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:37:10

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