AI 中文总结
该研究旨在检测毫克级振荡器间引力相互作用及与量子力学的关系,通过特定装置和模拟等方法,能在一定积分时间内检测引力耦合,为探测接近量子 regime 系统的引力效应搭建了现实平台。
AI 中文摘要
我们展示了一个正在进行的光机械实验,旨在检测毫克级振荡器之间的引力相互作用,并探索其与量子力学的相互作用。该装置采用两个通过重力耦合并在超低温下通过高精细光学腔读出的微加工振荡器。有限元模拟、噪声建模和灵敏度估计表明,引力耦合可以在几分钟到几小时的积分时间内被检测到。该实验为探测接近量子 regime 的系统中的引力效应建立了一个现实的平台。
英文摘要
We present an ongoing optomechanical experiment aimed at detecting gravitational interaction between milligram-scale oscillators, and exploring its interplay with quantum mechanics. The setup employs two microfabricated oscillators coupled via gravity and read out through a high-finesse optical cavity, at ultra-cryogenic temperature. Finite element simulations, noise modelling, and sensitivity estimates demonstrate that gravitational coupling can be detected with integration times ranging from minutes to hours. The experiment establishes a realistic platform for probing gravitational effects in systems approaching the quantum regime.