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从强相互作用的一维超流体到莫特绝缘体的转变。

Transition from a strongly interacting 1d superfluid to a Mott insulator.

作者信息

Stöferle Thilo, Moritz Henning, Schori Christian, Köhl Michael, Esslinger Tilman

机构信息

Institute of Quantum Electronics, ETH Zürich Hönggerberg, CH-8093 Zürich, Switzerland.

出版信息

Phys Rev Lett. 2004 Apr 2;92(13):130403. doi: 10.1103/PhysRevLett.92.130403. Epub 2004 Mar 31.

Abstract

We study 1D trapped Bose gases in the strongly interacting regime. The systems are created in an optical lattice and are subject to a longitudinal periodic potential. Bragg spectroscopy enables us to investigate the excitation spectrum in different regimes. In the superfluid phase a broad continuum of excitations is observed which calls for an interpretation beyond the Bogoliubov spectrum taking into account the effect of strong interactions. In the Mott insulating phase a discrete spectrum is measured. Both phases are compared to the 3D situation and to the crossover regime from 1D to 3D. The coherence length and coherent fraction of the gas are measured in all configurations. We observe signatures for increased fluctuations characteristic for 1D systems. Moreover, the collective oscillations cease near the transition to the Mott insulator phase.

摘要

我们研究处于强相互作用 regime 的一维捕获玻色气体。这些系统在光学晶格中创建,并受到纵向周期势的作用。布拉格光谱使我们能够研究不同 regime 下的激发光谱。在超流相中,观察到一个宽广的激发连续谱,这需要在考虑强相互作用效应的情况下,超越博戈留波夫光谱进行解释。在莫特绝缘相中,测量到一个离散光谱。将这两个相都与三维情况以及从一维到三维的交叉 regime 进行了比较。在所有配置下都测量了气体的相干长度和相干分数。我们观察到一维系统特有的涨落增加的特征。此外,集体振荡在接近向莫特绝缘体相转变时停止。

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