论文标题
使用双表TOP 3D干涉仪观察量子重力现象的实验
An Experiment for Observing Quantum Gravity Phenomena using Twin Table-Top 3D Interferometers
论文作者
论文摘要
基于全息原理的量子重力理论预测距离测量值的量子波动的存在,这些距离测量值在宏观距离上积累并表现出相关性。本文模拟了由于这种现象学而引起的预期信号,并详细介绍了为衡量或限制它的共同定位的双表TOP 3D干涉仪的设计和估计灵敏度。估计该实验对位移$ \ sim10^{ - 19} \,\ rm {m}/\ sqrt {\ rm {hz}} $在1至250 MHz之间的频段中,超过了先前的实验,可以超过以前的实验并实现了量子重态的可能发生的量子。该实验还将对MHz重力波和各种暗物质候选者敏感。
Theories of quantum gravity based on the holographic principle predict the existence of quantum fluctuations of distance measurements that accumulate and exhibit correlations over macroscopic distances. This paper models an expected signal due to this phenomenology, and details the design and estimated sensitivity of co-located twin table-top 3D interferometers being built to measure or constrain it. The experiment is estimated to be sensitive to displacements $\sim10^{-19}\,\rm{m}/\sqrt{\rm{Hz}}$ in a frequency band between 1 and 250 MHz, surpassing previous experiments and enabling the possible observation of quantum gravity phenomena. The experiment will also be sensitive to MHz gravitational waves and various dark matter candidates.