论文标题

在一维费米二极子中的尖锐量子集体模式的出现

Emergence of a sharp quantum collective mode in a one-dimensional Fermi polaron

论文作者

Dolgirev, Pavel E., Qu, Yi-Fan, Zvonarev, Mikhail B., Shi, Tao, Demler, Eugene

论文摘要

移动杂质与费米介质相互作用的费米 - 果龙问题在各种情况下出现,从Landau的费米 - 液体理论的基础到半导体中的电子脱位相互作用到高温超导体的不寻常特性。虽然通常,培养基仅为杂质提供了耗散的环境,但二极管敷料的量子图片更为复杂,并且来自问题的几个和多体方面的相互作用。对费米极化物动力学的常规期望是它具有耗散性,并且任何多余的能量都会迅速从杂质作为粒子孔激发的杂质发出。在这里,我们报告了一种杂质的一维系统中的极具不同类型的极性动力学,使其与费米子反应相互作用。当系统的总动量等于费米动量时,出现了一种尖锐的集体模式,对应于杂质周围二极管云的长寿命振荡。可以使用Ramsey干涉法和射频光谱法对超电原子进行实验观察到这种模式。

The Fermi-polaron problem of a mobile impurity interacting with fermionic medium emerges in various contexts, ranging from the foundations of Landau's Fermi-liquid theory to electron-exciton interaction in semiconductors, to unusual properties of high-temperature superconductors. While classically the medium provides only a dissipative environment to the impurity, quantum picture of polaronic dressing is more intricate and arises from the interplay of few- and many-body aspects of the problem. The conventional expectation for the dynamics of Fermi polarons is that it is dissipative in character, and any excess energy is rapidly emitted away from the impurity as particle-hole excitations. Here we report a strikingly different type of polaron dynamics in a one-dimensional system of the impurity interacting repulsively with the fermions. When the total momentum of the system equals the Fermi momentum, there emerges a sharp collective mode corresponding to long-lived oscillations of the polaronic cloud surrounding the impurity. This mode can be observed experimentally with ultracold atoms using Ramsey interferometry and radio-frequency spectroscopy.

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