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Luttinger 液体的热破坏。

Thermal disruption of a Luttinger liquid.

机构信息

Department of Physics and Astronomy, Rice University, Houston, Texas, 77005, USA.

出版信息

Nat Commun. 2023 May 31;14(1):3154. doi: 10.1038/s41467-023-38767-0.

Abstract

The Tomonaga-Luttinger liquid (TLL) theory describes the low-energy excitations of strongly correlated one-dimensional (1D) fermions. In the past years, a number of studies have provided a detailed understanding of this universality class. More recently, theoretical investigations that go beyond the standard low-temperature, linear-response TLL regime have been developed. While these provide a basis for understanding the dynamics of the spin-incoherent Luttinger liquid, there are few experimental investigations in this regime. Here we report the observation of a thermally induced, spin-incoherent Luttinger liquid in a Li atomic Fermi gas confined to 1D. We use Bragg spectroscopy to measure the suppression of spin-charge separation and the decay of correlations as the temperature is increased. Our results probe the crossover between the coherent and incoherent regimes of the Luttinger liquid and elucidate the roles of the charge and the spin degrees of freedom in this regime.

摘要

汤姆松-拉廷格液体(TLL)理论描述了强关联一维(1D)费米子的低能激发。在过去的几年中,许多研究提供了对这一普遍类的详细理解。最近,超越标准低温、线性响应 TLL 范围的理论研究已经得到了发展。虽然这些为理解自旋非相干拉廷格液体的动力学提供了基础,但在这个范围内的实验研究很少。在这里,我们报告了在限制在一维的 Li 原子费米气体中观察到的热诱导的、自旋非相干的拉廷格液体。我们使用布拉格光谱法来测量随着温度升高,自旋-电荷分离的抑制和相关性的衰减。我们的结果探测了拉廷格液体的相干和非相干区域之间的交叉,并阐明了在这个区域中电荷和自旋自由度的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5e17/10232499/d4255c8e3d41/41467_2023_38767_Fig1_HTML.jpg

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