Cite this article:
Yuyao Zong, Yi Han, Jiawei Liu, Cheng Ci, Zhenyu Xue, Shiying Cao. A 51-dB signal-to-noise ratio carrier-envelope offset frequency in an environmentally stabilized polarization-maintaining optical frequency combJ. Chin. Phys. B, 2026, 35(6): 064206.
| Yuyao Zong, Yi Han, Jiawei Liu, Cheng Ci, Zhenyu Xue, Shiying Cao. A 51-dB signal-to-noise ratio carrier-envelope offset frequency in an environmentally stabilized polarization-maintaining optical frequency combJ. Chin. Phys. B, 2026, 35(6): 064206. |
A 51-dB signal-to-noise ratio carrier-envelope offset frequency in an environmentally stabilized polarization-maintaining optical frequency comb
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Abstract
A femtosecond optical frequency comb (OFC) based on a laser with a nonlinear amplification loop mirror mode-locking mechanism is proposed. The laser adopts a fully polarization-maintaining (PM) structure, which can realize self-starting mode-locking at the center wavelength of 1560.2 nm with a 195.65 MHz repetition rate at a pump power of 630 mW, and the frequency stability after phase-locking is 1.95 × 10−12 with a 1-s averaging time. Through a homemade f–2f interferometer, the detected free-running fceo signal exhibits a signal-to-noise ratio (SNR) as high as 51 dB. After phase-locking, fceo has a frequency stability of 1.17 × 10−11 with a 1-s averaging time. -
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