光子
物理
时空
干扰(通信)
大气(单位)
量子
量子电动力学
量子力学
气象学
计算机科学
计算机网络
频道(广播)
作者
Hui-Nan Wu,Yuhuai Li,Bo Li,Xiang You,Runze Liu,Ji-Gang Ren,Juan Yin,Chao‐Yang Lu,Yuan Cao,Cheng-Zhi Peng,Li Li
标识
DOI:10.1103/physrevlett.133.020201
摘要
The emergence of quantum mechanics and general relativity has transformed our understanding of the natural world significantly. However, integrating these two theories presents immense challenges, and their interplay remains untested. Recent theoretical studies suggest that the single-photon interference covering huge space can effectively probe the interface between quantum mechanics and general relativity. We developed an alternative design using unbalanced Michelson interferometers to address this and validated its feasibility over an 8.4 km free-space channel. Using a high-brightness single-photon source based on quantum dots, we demonstrated single-photon interference along this long-distance baseline. We achieved a phase measurement precision of 16.2 mrad, which satisfied the measurement requirements for a gravitational redshift at the geosynchronous orbit by 5 times the standard deviation. Our results confirm the feasibility of the single-photon version of the Colella-Overhauser-Werner experiment for testing the quantum effects in curved spacetime.
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