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Bibliographic Details
Main Authors: Roiz, Mikhail, Kumar, Krishna, Karhu, Juho, Vainio, Markku
Format: Preprint
Published: 2020
Subjects:
Online Access:https://arxiv.org/abs/2010.09423
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author Roiz, Mikhail
Kumar, Krishna
Karhu, Juho
Vainio, Markku
author_facet Roiz, Mikhail
Kumar, Krishna
Karhu, Juho
Vainio, Markku
contents We present a simple method for fully-stabilized mid-infrared optical frequency comb generation based on single-pass femtosecond optical parametric generation that is seeded by a continuous-wave laser. We have implemented the method in a periodically poled lithium niobate crystal that produces a frequency comb tunable across 3325 - 4000 nm (2380 - 3030 cm-1). The method generates the mid-infrared (idler) comb with known and stabilized Carrier-Envelope Offset (CEO) frequency without the need to directly detect it. The idler CEO is continuously tunable for almost half of the repetition rate and can be modulated, while maintaining its central frequency. Together with the high output power (up to 700 mW) and low intensity noise (0.018% integrated in 10 Hz - 2 MHz bandwidth) this makes the demonstrated mid-infrared frequency comb promising for many applications such as high-precision molecular spectroscopy, frequency metrology and high harmonic generation.
format Preprint
id arxiv_https___arxiv_org_abs_2010_09423
institution arXiv
publishDate 2020
record_format arxiv
spellingShingle Simple method for mid-infrared optical frequency comb generation with dynamic offset frequency tuning
Roiz, Mikhail
Kumar, Krishna
Karhu, Juho
Vainio, Markku
Optics
We present a simple method for fully-stabilized mid-infrared optical frequency comb generation based on single-pass femtosecond optical parametric generation that is seeded by a continuous-wave laser. We have implemented the method in a periodically poled lithium niobate crystal that produces a frequency comb tunable across 3325 - 4000 nm (2380 - 3030 cm-1). The method generates the mid-infrared (idler) comb with known and stabilized Carrier-Envelope Offset (CEO) frequency without the need to directly detect it. The idler CEO is continuously tunable for almost half of the repetition rate and can be modulated, while maintaining its central frequency. Together with the high output power (up to 700 mW) and low intensity noise (0.018% integrated in 10 Hz - 2 MHz bandwidth) this makes the demonstrated mid-infrared frequency comb promising for many applications such as high-precision molecular spectroscopy, frequency metrology and high harmonic generation.
title Simple method for mid-infrared optical frequency comb generation with dynamic offset frequency tuning
topic Optics
url https://arxiv.org/abs/2010.09423