Stable coherent mode-locking based on $$\pi$$ π pulse formation in single-section lasers

Abstract Here we consider coherent mode-locking (CML) regimes in single-section cavity lasers, taking place for pulse durations less than atomic population and phase relaxation times, which arise due to coherent Rabi oscillations of the atomic inversion. Typically, CML is introduced for lasers with...

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Main Authors: Rostislav Arkhipov, Anton Pakhomov, Mikhail Arkhipov, Ihar Babushkin, Nikolay Rosanov
Format: Article
Language:English
Published: Nature Publishing Group 2021-01-01
Series:Scientific Reports
Online Access:https://doi.org/10.1038/s41598-020-80775-3
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spelling doaj-5e0f962b0f92455e9eee79db115e692f2021-01-17T12:40:01ZengNature Publishing GroupScientific Reports2045-23222021-01-0111111310.1038/s41598-020-80775-3Stable coherent mode-locking based on $$\pi$$ π pulse formation in single-section lasersRostislav Arkhipov0Anton Pakhomov1Mikhail Arkhipov2Ihar Babushkin3Nikolay Rosanov4St. Petersburg State UniversityITMO UniversitySt. Petersburg State UniversityInstitute of Quantum Optics, Leibniz University HannoverITMO UniversityAbstract Here we consider coherent mode-locking (CML) regimes in single-section cavity lasers, taking place for pulse durations less than atomic population and phase relaxation times, which arise due to coherent Rabi oscillations of the atomic inversion. Typically, CML is introduced for lasers with two sections, the gain and absorber ones. Here we show that, for certain combination of the cavity length and relaxation parameters, a very stable CML in a laser, containing only gain section, may arise. The mode-locking is unconditionally self-starting and appears due to balance of intra-pulse de-excitation and slow interpulse-scale pump-induced relaxation processes. We also discuss the scaling of the system to shorter pulse durations, showing a possibility of mode-locking for few-cycle pulses.https://doi.org/10.1038/s41598-020-80775-3
collection DOAJ
language English
format Article
sources DOAJ
author Rostislav Arkhipov
Anton Pakhomov
Mikhail Arkhipov
Ihar Babushkin
Nikolay Rosanov
spellingShingle Rostislav Arkhipov
Anton Pakhomov
Mikhail Arkhipov
Ihar Babushkin
Nikolay Rosanov
Stable coherent mode-locking based on $$\pi$$ π pulse formation in single-section lasers
Scientific Reports
author_facet Rostislav Arkhipov
Anton Pakhomov
Mikhail Arkhipov
Ihar Babushkin
Nikolay Rosanov
author_sort Rostislav Arkhipov
title Stable coherent mode-locking based on $$\pi$$ π pulse formation in single-section lasers
title_short Stable coherent mode-locking based on $$\pi$$ π pulse formation in single-section lasers
title_full Stable coherent mode-locking based on $$\pi$$ π pulse formation in single-section lasers
title_fullStr Stable coherent mode-locking based on $$\pi$$ π pulse formation in single-section lasers
title_full_unstemmed Stable coherent mode-locking based on $$\pi$$ π pulse formation in single-section lasers
title_sort stable coherent mode-locking based on $$\pi$$ π pulse formation in single-section lasers
publisher Nature Publishing Group
series Scientific Reports
issn 2045-2322
publishDate 2021-01-01
description Abstract Here we consider coherent mode-locking (CML) regimes in single-section cavity lasers, taking place for pulse durations less than atomic population and phase relaxation times, which arise due to coherent Rabi oscillations of the atomic inversion. Typically, CML is introduced for lasers with two sections, the gain and absorber ones. Here we show that, for certain combination of the cavity length and relaxation parameters, a very stable CML in a laser, containing only gain section, may arise. The mode-locking is unconditionally self-starting and appears due to balance of intra-pulse de-excitation and slow interpulse-scale pump-induced relaxation processes. We also discuss the scaling of the system to shorter pulse durations, showing a possibility of mode-locking for few-cycle pulses.
url https://doi.org/10.1038/s41598-020-80775-3
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