脚踢后的一维费米极子:动量分布的双面奇异性、布拉格反射和其他精确结果

IF 4.6 2区 物理与天体物理 Q1 PHYSICS, MULTIDISCIPLINARY
Oleksandr Gamayun, Oleg Lychkovskiy
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引用次数: 0

摘要

浸入量子流体中的移动杂质粒子会形成一个极子--一个由杂质和其周围流体的局部扰动组成的准粒子。我们的问题是,一维极子在受到踢击(即突然施加一个力,瞬间给杂质带来一个有限的冲量)后会发生什么变化。在描述费米子或硬核玻色子一维气体中杂质的可积分模型框架内,我们计算了踢后弛豫结束时建立的极子动量分布。这种分布的一个显著特点是双面幂律奇点。它的出现有两个过程。在第一个过程中,整个冲量都转移到了极子上,而没有在流体中产生声子样激发。在第二个过程中,极子和流体的质量中心运动共享脉冲,同样不会产生任何流体激励。后一个过程实际上是在出现的布里渊区边缘的布拉格反射。我们仔细分析了这两个过程的条件。得出了奇点附近分布的渐近形式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
One-dimensional Fermi polaron after a kick: Two-sided singularity of the momentum distribution, Bragg reflection and other exact results
A mobile impurity particle immersed in a quantum fluid forms a polaron - a quasiparticle consisting of the impurity and a local disturbance of the fluid around it. We ask what happens to a one-dimensional polaron after a kick, i.e. an abrupt application of a force that instantly delivers a finite impulse to the impurity. In the framework of an integrable model describing an impurity in a one-dimensional gas of fermions or hard-core bosons, we calculate the distribution of the polaron momentum established when the post-kick relaxation is over. A remarkable feature of this distribution is a two-sided power-law singularity. It emerges due to one of two processes. In the first process, the whole impulse is transferred to the polaron, without creating phonon-like excitations of the fluid. In the second process, the impulse is shared between the polaron and the center-of-mass motion of the fluid, again without creating any fluid excitations. The latter process is, in fact, a Bragg reflection at the edge of the emergent Brillouin zone. We carefully analyze the conditions for each of the two processes. The asymptotic form of the distribution in the vicinity of the singularity is derived.
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来源期刊
SciPost Physics
SciPost Physics Physics and Astronomy-Physics and Astronomy (all)
CiteScore
8.20
自引率
12.70%
发文量
315
审稿时长
10 weeks
期刊介绍: SciPost Physics publishes breakthrough research articles in the whole field of Physics, covering Experimental, Theoretical and Computational approaches. Specialties covered by this Journal: - Atomic, Molecular and Optical Physics - Experiment - Atomic, Molecular and Optical Physics - Theory - Biophysics - Condensed Matter Physics - Experiment - Condensed Matter Physics - Theory - Condensed Matter Physics - Computational - Fluid Dynamics - Gravitation, Cosmology and Astroparticle Physics - High-Energy Physics - Experiment - High-Energy Physics - Theory - High-Energy Physics - Phenomenology - Mathematical Physics - Nuclear Physics - Experiment - Nuclear Physics - Theory - Quantum Physics - Statistical and Soft Matter Physics.
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