论文标题

在强烈相互作用的费米气体中的超流体过渡的热量表

Thermography of the superfluid transition in a strongly interacting Fermi gas

论文作者

Yan, Zhenjie, Patel, Parth B., Mukherjee, Biswaroop, Vale, Chris J., Fletcher, Richard J., Zwierlein, Martin

论文摘要

热运输是所有物理系统的基本特性,可以用作指纹识别物质状态的指纹。在正常液体中,热点在超流体热量中扩散,以一种称为第二声音的波传播。尽管对理解量子材料的重要性很重要,但对热传输的直接成像是具有挑战性的,并且通常求助于检测次要效应,例如密度或压力的变化。在这里,我们建立了强烈相互作用的原子费米气体(一种范式系统)的热量成像,该系统的性质与非常相关的电子,核物质和中子星。正如发光金属的颜色揭示其温度一样,相互作用的费米气体的射频光谱可提供空间分辨的温度计,并分辨率下。直接观察到超氟相位转变是从热扩散到第二声音传播的突然变化,并且伴随着第二个声音扩散率的峰。该方法产生了强烈相互作用的费米气体的全热和密度响应,因此都定义了Landau两流体流体动力学的所有特性。我们的测量是在强烈相互作用的费米子问题中的运输理论的基准。

Heat transport is a fundamental property of all physical systems and can serve as a fingerprint identifying different states of matter. In a normal liquid a hot spot diffuses while in a superfluid heat propagates as a wave called second sound. Despite its importance for understanding quantum materials, direct imaging of heat transport is challenging, and one usually resorts to detecting secondary effects, such as changes in density or pressure. Here we establish thermography of a strongly interacting atomic Fermi gas, a paradigmatic system whose properties relate to strongly correlated electrons, nuclear matter and neutron stars. Just as the color of a glowing metal reveals its temperature, the radiofrequency spectrum of the interacting Fermi gas provides spatially resolved thermometry with sub-nanokelvin resolution. The superfluid phase transition is directly observed as the sudden change from thermal diffusion to second sound propagation, and is accompanied by a peak in the second sound diffusivity. The method yields the full heat and density response of the strongly interacting Fermi gas, and therefore all defining properties of Landau's two-fluid hydrodynamics. Our measurements serve as a benchmark for theories of transport in strongly interacting fermionic matter.

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