Microwave noise downconversion in interband cascade laser frequency combs

Fuente: arXiv
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Main Authors: Gomółka, Grzegorz, Pilat, Florian, Schwarz, Benedikt, Kim, Chul Soo, Kim, Mijin, Canedy, Chadwick L., Vurgaftman, Igor, Meyer, Jerry R., Sterczewski, Łukasz A.
Format: Preprint
Published: 2026
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author Gomółka, Grzegorz
Pilat, Florian
Schwarz, Benedikt
Kim, Chul Soo
Kim, Mijin
Canedy, Chadwick L.
Vurgaftman, Igor
Meyer, Jerry R.
Sterczewski, Łukasz A.
author_facet Gomółka, Grzegorz
Pilat, Florian
Schwarz, Benedikt
Kim, Chul Soo
Kim, Mijin
Canedy, Chadwick L.
Vurgaftman, Igor
Meyer, Jerry R.
Sterczewski, Łukasz A.
contents Chip-scale semiconductor laser frequency combs offer remarkable prospects for compact and power-efficient optical sensors. For the laser to be suitable for typical comb applications, its degree of coherence must first be assessed from a microwave self-mixing signal. Unfortunately, such measurements require scarcely available high-speed photodetectors with multi-GHz bandwidths and radio-frequency electronics. However, in this work, we demonstrate a simplified approach to comb coherence assessment for interband cascade lasers based on a relationship between easily-accessible MHz-frequency (baseband) noise and the multi-GHz-frequency intermode beat note. The downconversion of microwave noise to near-DC frequencies is found to originate intrinsically from the laser, which simultaneously acts as a frequency mixer due to electrical nonlinearities and a phase-to-amplitude noise converter due to the linewidth enhancement factor. Correlation between the electrical signals is explored in both frequency and time domains. Since this phenomenon is potentially universal in semiconductor lasers, it creates a new opportunity for frequency comb characterization, which may be particularly valuable in wavelength regions where fast photodetectors have limited availability.
format Preprint
id arxiv_https___arxiv_org_abs_2604_21418
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Microwave noise downconversion in interband cascade laser frequency combs
Gomółka, Grzegorz
Pilat, Florian
Schwarz, Benedikt
Kim, Chul Soo
Kim, Mijin
Canedy, Chadwick L.
Vurgaftman, Igor
Meyer, Jerry R.
Sterczewski, Łukasz A.
Optics
Chip-scale semiconductor laser frequency combs offer remarkable prospects for compact and power-efficient optical sensors. For the laser to be suitable for typical comb applications, its degree of coherence must first be assessed from a microwave self-mixing signal. Unfortunately, such measurements require scarcely available high-speed photodetectors with multi-GHz bandwidths and radio-frequency electronics. However, in this work, we demonstrate a simplified approach to comb coherence assessment for interband cascade lasers based on a relationship between easily-accessible MHz-frequency (baseband) noise and the multi-GHz-frequency intermode beat note. The downconversion of microwave noise to near-DC frequencies is found to originate intrinsically from the laser, which simultaneously acts as a frequency mixer due to electrical nonlinearities and a phase-to-amplitude noise converter due to the linewidth enhancement factor. Correlation between the electrical signals is explored in both frequency and time domains. Since this phenomenon is potentially universal in semiconductor lasers, it creates a new opportunity for frequency comb characterization, which may be particularly valuable in wavelength regions where fast photodetectors have limited availability.
title Microwave noise downconversion in interband cascade laser frequency combs
topic Optics
url https://arxiv.org/abs/2604.21418