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Measuring the Edwards-Anderson order parameter of the Bose glass:a quantum gas microscope approach

机译:测量Bose玻璃的Edwards-Anderson阶参数:量子气体显微镜方法

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摘要

With the advent of spatially resolved fluorescence imaging in quantum gas microscopes, it is now possible to directly image glassy phases and probe the local effects of disorder in a highly controllable setup. Here we present numerical calculations using a spatially resolved local mean-field theory, show that it captures the essential physics of the disordered system and use it to simulate the density distributions seen in single-shot fluorescence microscopy. From these simulated images we extract local properties of the phases which are measurable by a quantum gas microscope and show that unambiguous detection of the Bose glass is possible. In particular, we show that experimental determination of the Edwards-Anderson order parameter is possible in a strongly correlated quantum system using existing experiments. We also suggest modifications to the experiments which will allow further properties of the Bose glass to be measured.
机译:随着量子气体显微镜中空间分辨荧光成像技术的出现,现在可以直接对玻璃相成像并以高度可控的方式探测无序的局部影响。在这里,我们介绍使用空间分辨局部均值场理论进行的数值计算,表明它捕获了无序系统的基本物理原理,并使用它来模拟单次荧光显微镜观察到的密度分布。从这些模拟图像中,我们提取了可通过量子气体显微镜测量的相的局部性质,并表明可以对Bose玻璃进行明确检测。特别地,我们表明,使用现有实验,可以在强相关的量子系统中实验确定Edwards-Anderson阶参数。我们还建议对实验进行修改,以允许测量Bose玻璃的其他性能。

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