论文标题

通过70 dB的自由空间渠道转移时频转移:朝卫星地面传播

Time-Frequency Transfer through a 70 dB Free Space Channel: Towards Satellite-Ground Time Dissemination

论文作者

Shen, Qi, Guan, Jian-Yu, Zeng, Ting, Lu, Qi-Ming, Huang, Liang, Cao, Yuan, Chen, Jiu-Peng, Tao, Tian-Qi, Wu, Jin-Cai, Hou, Lei, Liao, Sheng-Kai, Ren, Ji-Gang, Yin, Juan, Jia, Jian-Jun, Jiang, Hai-Feng, Peng, Cheng-Zhi, Zhang, Qiang, Pan, Jian-Wei

论文摘要

时间和频率传输位于计量领域的核心。与当前的微波传播(例如GPS)相比,光学结构域传播可以在更高的准确性方面提供多个数量级,这允许许多应用,例如重新定义第二个应用,对一般相对论和基本量子物理,精度导航和量子通信的测试。尽管已经证明了千公里光纤线的光频传递,但洲际时间比较和同步仍需要卫星自由空间光学时间和频率传递。在地面上有数十公里的距离,已经实施了相当多的开创性的自由空间光学时间和频率实验。但是,没有详细的分析或地面测试来证明基于卫星的光学时频转移的可行性。在这里,我们分析了该系统的可能性,然后提供高通道损失的第一步地面测试。我们在16公里的自由空间通道中以$ 10^{ - 18} $的不稳定性在8,000秒内表现出光频传输,损失高达70〜dB,这与在中等地球轨道(MEO)和GeoStationary Earth orbit(Geo)的卫星 - 地面链路的丧失相当。

Time and frequency transfer lies at the heart of the field of metrology. Compared to current microwave dissemination such as GPS, optical domain dissemination can provide more than one order of magnitude in terms of higher accuracy, which allows for many applications such as the redefinition of the second, tests of general relativity and fundamental quantum physics, precision navigation and quantum communication. Although optical frequency transfer has been demonstrated over thousand kilometers fiber lines, intercontinental time comparison and synchronization still requires satellite free space optical time and frequency transfer. Quite a few pioneering free space optical time and frequency experiments have been implemented at the distance of tens kilometers at ground level. However, there exists no detailed analysis or ground test to prove the feasibility of satellite-based optical time-frequency transfer. Here, we analyze the possibility of this system and then provide the first-step ground test with high channel loss. We demonstrate the optical frequency transfer with an instability of $10^{-18}$ level in 8,000 seconds across a 16-km free space channel with a loss of up to 70~dB, which is comparable with the loss of a satellite-ground link at medium earth orbit (MEO) and geostationary earth orbit (GEO).

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