论文标题

观察到玻色网凝结物中的微型原子数量波动

Observation of Microcanonical Atom Number Fluctuations in a Bose-Einstein Condensate

论文作者

Christensen, M. B., Vibel, T., Hilliard, A. J., Kruk, M. B., Pawłowski, K., Hryniuk, D., Rzążewski, K., Kristensen, M. A., Arlt, J. J.

论文摘要

量子系统通常以其物理可观察物的固有波动的特征。尽管这一基本重要性,但在有限温度下相互作用的量子系统波动的研究仍在构成相当大的理论和实验挑战。在这里,我们报告了弱相互作用的Bose-Einstein冷凝物中原子数波动的表征。通过非破坏性检测和冷却序列的主动稳定的结合来减轻技术波动。我们观察到\ si {27} {\%}降低的波动,低于规范对非相互作用气体的期望,揭示了我们系统的微磁性。在热力学极限以外的实验可访问的过渡区域中,峰值波动具有接近线性缩放的原子数$Δn_{0,\ mathrm {p}}^2 \ propto n^{1.134} $。因此,我们的实验结果为在典型的实验条件下的理论计算树立了基准。

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 non-destructive detection and active stabilization of the cooling sequence. We observe fluctuations reduced by \SI{27}{\percent} below the canonical expectation for a non-interacting gas, revealing the microcanonical nature of our system. The peak fluctuations have near linear scaling with atom number $ΔN_{0,\mathrm{p}}^2 \propto N^{1.134}$ 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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