Control of integrated micro-resonator wavelength via balanced homodyne locking

JA Cox, AL Lentine, DC Trotter, AL Starbuck - Optics express, 2014 - opg.optica.org
JA Cox, AL Lentine, DC Trotter, AL Starbuck
Optics express, 2014opg.optica.org
We describe and experimentally demonstrate a method for active control of resonant
modulators and filters in an integrated photonics platform. Variations in resonance frequency
due to manufacturing processes and thermal fluctuations are corrected by way of balanced
homodyne locking. The method is compact, insensitive to intensity fluctuations, minimally
disturbs the micro-resonator, and does not require an arbitrary reference to lock. We
demonstrate long-term stable locking of an integrated filter to a laser swept over 1.25 THz. In …
We describe and experimentally demonstrate a method for active control of resonant modulators and filters in an integrated photonics platform. Variations in resonance frequency due to manufacturing processes and thermal fluctuations are corrected by way of balanced homodyne locking. The method is compact, insensitive to intensity fluctuations, minimally disturbs the micro-resonator, and does not require an arbitrary reference to lock. We demonstrate long-term stable locking of an integrated filter to a laser swept over 1.25 THz. In addition, we show locking of a modulator with low bit error rate while the chip temperature is varied from 5 to 60° C.
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