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Quantum-dot micropillar lasers subject to coherent time-delayed optical feedback from a short external cavity

Please always quote using this URN: urn:nbn:de:bvb:20-opus-322485
  • We investigate the mode-switching dynamics of an electrically driven bimodal quantum-dot micropillar laser when subject to delayed coherent optical feedback from a short external cavity. We experimentally characterize how the external cavity length, being on the same order than the microlaser’s coherence length, influences the spectral and dynamical properties of the micropillar laser. Moreover, we determine the relaxation oscillation frequency of the micropillar by superimposing optical pulse injection to a dc current. It is found that theWe investigate the mode-switching dynamics of an electrically driven bimodal quantum-dot micropillar laser when subject to delayed coherent optical feedback from a short external cavity. We experimentally characterize how the external cavity length, being on the same order than the microlaser’s coherence length, influences the spectral and dynamical properties of the micropillar laser. Moreover, we determine the relaxation oscillation frequency of the micropillar by superimposing optical pulse injection to a dc current. It is found that the optical pulse can be used to disturb the feedback-coupled laser within one roundtrip time in such a way that it reaches the same output power as if no feedback was present. Our results do not only expand the understanding of microlasers when subject to optical feedback from short external cavities, but pave the way towards tailoring the properties of this key nanophotonic system for studies in the quantum regime of self-feedback and its implementation to integrated photonic circuits.show moreshow less

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Metadaten
Author: Steffen Holzinger, Christian Schneider, Sven Höfling, Xavier Porte, Stephan Reitzenstein
URN:urn:nbn:de:bvb:20-opus-322485
Document Type:Journal article
Faculties:Fakultät für Physik und Astronomie / Physikalisches Institut
Language:English
Parent Title (English):Scientific Reports
Year of Completion:2019
Volume:9
Article Number:631
Source:Scientific Reports (2019) 9:631. https://doi.org/10.1038/s41598-018-36599-3
DOI:https://doi.org/10.1038/s41598-018-36599-3
Dewey Decimal Classification:5 Naturwissenschaften und Mathematik / 53 Physik / 530 Physik
Tag:nanophotonics and plasmonics; photonic devices; quantum dots; semiconductor lasers
Release Date:2024/07/04
EU-Project number / Contract (GA) number:615613
OpenAIRE:OpenAIRE
Licence (German):License LogoCC BY: Creative-Commons-Lizenz: Namensnennung 4.0 International