Co‐Generation of Orthogonal Soliton Pair in a Monolithic Fiber Resonator with Mechanical Tunability

Author:

Qin Chenye12,Du Junting1,Tan Teng1,Chang Bing1,Jia Kunpeng2,Liang Yupei1,Wang Wenting3,Guo Yanhong1,Xia Handing4,Zhu Shining2,Rao Yunjiang15,Xie Zhenda2,Yao Baicheng1ORCID

Affiliation:

1. Key Laboratory of Optical Fiber Sensing and Communications (Education Ministry of China) University of Electronic Science and Technology of China Chengdu 611731 China

2. National Laboratory of Solid State Microstructures and, School of Electronic Science and Engineering, School of Physics College of Engineering and Applied Sciences, Collaborative Innovation Center of Advanced Microstructures, and Key Laboratory of Intelligent Optical Sensing and Manipulation (Nanjing University), Ministry of Education Nanjing University Nanjing 210008 China

3. Fang Lu Mesoscopic Optics and Quantum Electronics Laboratory University of California Los Angeles CA 90095 United States

4. Research Center of Laser Fusion China Academic of Engineering Physics Mianyang 621900 China

5. Research Centre for Optical Fiber Sensing Zhejiang Laboratory Hangzhou 310000 China

Abstract

AbstractSoliton frequency combs generated in microresonators offer powerful tools for optical metrology, due to the high time‐frequency resolution. Here, via exciting the intracavity Brillouin laser in a high Q monolithic fiber resonator, a pair of orthogonal Kerr soliton combs is generated, which share the same repetition (frep ≈ 1.001 GHz) due to the soliton trapping but different central wavelengths (≈ 9.278 GHz). They offer rich dual‐comb beat notes with minimum phase noise down to −166.5 dBc Hz−1@1 MHz. Thanks to the geometric flexibility of the monolithic fiber resonator, the orthogonal soliton pair is found to be mechanically controllable with high precision. Specifically, by applying external stress on the microcavity in a range of ≈ 0–7.33 mN, the difference of their carrier‐envelope‐offset frequencies (Δfceo) is linearly tunable with a response of 0.3 kHz µN−1, meanwhile, tunability of the frep reaches 0.4 kHz µN−1. Such an orthogonally polarized dual soliton with stress controllability combining Brillouin excitation and parametric oscillation can offer a miniature all‐in‐fiber tool for wide applications ranging from frequency‐adjustable photonic microwave sources to highly sensitive gyroscopes.

Funder

National Key Research and Development Program of China

National Natural Science Foundation of China

Publisher

Wiley

Subject

Condensed Matter Physics,Atomic and Molecular Physics, and Optics,Electronic, Optical and Magnetic Materials

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