Realization Of Carrier Envelope Phase Control In An Erbium-Doped All-Fiber Comb Via An Intracavity Electrical Polarization Controller

OPTICS LETTERS(2021)

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摘要
We present an erbium-doped all-fiber comb that is realized via intracavity piezoelectric mechanical responses by inserting an electrical polarization controller (EPC) for carrier envelope phase offset (f(ceo)) control and sticking a piezoelectric transducer (PZT) for repetition rate (f(r)) stabilization. With only three components inside the oscillator, it facilitates an all-fiber comb system with high integration and robustness. Besides f(ceo) control, smart, recoverable, and precise searching of mode-locked states can also be achieved by finely tuning the EPC driving voltages. The f(ceo) , signal can be tightly phase-locked due to the 20 kHz 3 dB bandwidth of the EPC device. Compared with the traditional pump feedback mode, the EPC approach exhibits a larger and flatter gain in the near-zero-dispersion zone of the fiber comb, corresponding to less EPC induced intracavity fluctuations. It is also a benefit for reducing cross regulation between f(r) and f(ceo) in long-term stabilization of the comb. (C) 2021 Optical Society of America
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