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高相干双色激光器及其在低噪声微波产生中的应用。

Highly coherent two-color laser and its application for low-noise microwave generation.

作者信息

He Bibo, Yang Jiachuan, Meng Fei, Yu Jialiang, Zhang Chenbo, Yang Qi-Fan, Zuo Yani, Lin Yige, Chen Zhangyuan, Fang Zhanjun, Xie Xiaopeng

机构信息

State Key Laboratory of Photonics and Communications, School of Electronics, Peking University, Beijing, China.

Division of Time and Frequency Metrology, National Institute of Metrology, Beijing, China.

出版信息

Nat Commun. 2025 Apr 29;16(1):4034. doi: 10.1038/s41467-025-59401-1.

Abstract

Two-color lasers with high coherence are essential for precision measurements and low-noise photonic microwave generation. However, conventional two-color lasers often suffer from reduced coherence when the frequency spacing is large. Here, we leverage the Pound-Drever-Hall technique to synchronize two lasers to a common ultra-stable optical reference cavity to break through the thermal noise constraint, achieving a highly coherent two-color laser. By overcoming non-common mode noise, we achieve an exceptional fractional frequency instability of 2.7 × 10 at 1 second, normalized to the optical frequency. To characterize coherence across large frequency spacings, we use electro-optical frequency division to transfer the stability of a 0.5 THz spaced two-color laser to a 25 GHz microwave signal. The resulting 25 GHz signals exhibit remarkable phase noise of  - 74 dBc Hz at 1 Hz and  - 120 dBc Hz at 100 Hz. Our results pave the way for a new era in precision measurement and light-matter interaction.

摘要

具有高相干性的双色激光器对于精密测量和低噪声光子微波产生至关重要。然而,当频率间隔较大时,传统的双色激光器通常会出现相干性降低的情况。在此,我们利用庞德-德弗-霍尔技术将两台激光器同步到一个共同的超稳定光学参考腔,以突破热噪声限制,实现了一种高相干性的双色激光器。通过克服非共模噪声,我们在1秒时实现了2.7×10的卓越分数频率不稳定性,以光频率归一化。为了表征大频率间隔上的相干性,我们使用电光分频将间隔为0.5太赫兹的双色激光器的稳定性转移到一个25吉赫兹的微波信号上。由此产生的25吉赫兹信号在1赫兹时表现出显著的-74分贝毫瓦每赫兹的相位噪声,在100赫兹时为-120分贝毫瓦每赫兹。我们的结果为精密测量和光与物质相互作用的新时代铺平了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4b17/12041592/4b456e47773b/41467_2025_59401_Fig1_HTML.jpg

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