Institut für Angewandte Physik, Universität Bonn, Wegelerstraße 8, 53115 Bonn, Germany.
Science. 2022 Mar 25;375(6587):1403-1406. doi: 10.1126/science.abm2543. Epub 2022 Mar 24.
The compressibility of a medium, quantifying its response to mechanical perturbations, is a fundamental property determined by the equation of state. For gases of material particles, studies of the mechanical response are well established, in fields from classical thermodynamics to cold atomic quantum gases. We demonstrate a measurement of the compressibility of a two-dimensional quantum gas of light in a box potential and obtain the equation of state for the optical medium. The experiment was carried out in a nanostructured dye-filled optical microcavity. We observed signatures of Bose-Einstein condensation at high phase-space densities in the finite-size system. Upon entering the quantum degenerate regime, the measured density response to an external force sharply increases, hinting at the peculiar prediction of an infinite compressibility of the deeply degenerate Bose gas.
介质的可压缩性,即其对机械扰动的响应能力,是由状态方程决定的基本属性。对于物质粒子气体,从经典热力学到冷原子量子气体等领域,对其力学响应的研究已经相当成熟。我们展示了对光在盒势中的二维量子气体可压缩性的测量,并获得了光介质的状态方程。该实验是在纳米结构染料填充的光学微腔中进行的。我们在有限尺寸系统中观察到了在高相空间密度下的玻色-爱因斯坦凝聚的特征。当进入量子简并态时,测量到的对外部力的密度响应急剧增加,这暗示了深度简并玻色气体的无限可压缩性的特殊预测。