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May 28, 2020Journal of Lightwave Technology33 citationsOpen Access

Common-Path Dual-Comb Spectroscopy Using a Single Electro-Optic Modulator

MSMiguel Soriano-AmatMSMarcelo A. SotoVDVicente Durán

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Abstract

Dual frequency comb (DFC) spectroscopy using electro-optic comb generators stands out for its flexibility, easy implementation, and low cost. Typically, two combs with different line spacing are generated from a common laser using independent electro-optic comb generators. This approach minimizes the impact of laser phase noise; however, the distinct paths followed by the two combs ultimately limit the attainable signal-to-noise ratio and long-term stability of the system. In this work, a common-path DFC is generated using a single modulator driven by an arbitrary waveform generator, thus enabling a remarkable increase of the system stability (up to 0.8 s of integration time) while maintaining high flexibility. The proposed technique is experimentally validated by implementing a dual frequency comb with 3000 lines, covering an optical bandwidth of 4.5 GHz, and demonstrating an optical-to-radiofrequency compression factor of 7500. Our system is able to measure extremely narrowband optical features (in the MHz range) with an accuracy only limited by the master laser stability.

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Soriano-Amat et al. (2020) studied this question.

synapsesocial.com/papers/6a7056d487f9210571279d61https://doi.org/10.1109/jlt.2020.2998372
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