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Modelocked mid-infrared frequency combs in a silicon microresonator

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arxiv 1604.06501 v1 pith:RH7TK52P submitted 2016-04-21 physics.optics

classification physics.optics
keywords combsfrequencymid-ircombmicroresonator-basedpumpmicroresonatormid-infrared
verification ladder T0 review T1 audit T2 compute T3 formal
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Mid-infrared (mid-IR) frequency combs have broad applications in molecular spectroscopy and chemical/biological sensing. Recently developed microresonator-based combs in this wavelength regime could enable portable and robust devices using a single-frequency pump field. Here, we report the first demonstration of a modelocked microresonator-based frequency comb in the mid-IR spanning 2.4 {\mu}m to 4.3 {\mu}m. We observe high pump-to-comb conversion efficiency, in which 40% of the pump power is converted to the output comb power. Utilizing an integrated PIN structure allows for tuning the silicon microresonator and controling modelocking and cavity soliton formation, simplifying the generation, monitoring and stabilization of mid-IR frequency combs via free-carrier detection and control. Our results significantly advance microresonator-based comb technology towards a portable and robust mid-IR spectroscopic device that operates at low pump powers.

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