物理
玻色-爱因斯坦凝聚体
可见的
缩放比例
量子涨落
量子
超冷原子
Atom(片上系统)
热力学极限
微正则系综
极限(数学)
量子力学
正则系综
统计物理学
蒙特卡罗方法
统计
数学分析
几何学
计算机科学
数学
嵌入式系统
作者
Mikkel Berg Christensen,Toke Vibel,Andrew J. Hilliard,Maciej Bartłomiej Kruk,Krzysztof Pawłowski,Dawid A. Hryniuk,Kazimierz Rzążewski,Margit Kristensen,J. Arlt
标识
DOI:10.1103/physrevlett.126.153601
摘要
Quantum systems are typically characterized by the inherent fluctuation of their physical observables. Despite this fundamental importance, the investigation of the fluctuations in interacting quantum systems at finite temperature continues to pose considerable theoretical and experimental challenges. Here we report the characterization of atom number fluctuations in weakly interacting Bose-Einstein condensates. Technical fluctuations are mitigated through a combination of nondestructive detection and active stabilization of the cooling sequence. We observe fluctuations reduced by 27% below the canonical expectation for a noninteracting gas, revealing the microcanonical nature of our system. The peak fluctuations have near linear scaling with atom number ΔN_{0,p}^{2}∝N^{1.134} in an experimentally accessible transition region outside the thermodynamic limit. Our experimental results thus set a benchmark for theoretical calculations under typical experimental conditions.
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