Rotational quantum beat lasing without inversion

dc.bibliographicCitation.firstPage586eng
dc.bibliographicCitation.issue6eng
dc.bibliographicCitation.journalTitleOpticaeng
dc.bibliographicCitation.lastPage592eng
dc.bibliographicCitation.volume7eng
dc.contributor.authorRichter, Maria
dc.contributor.authorLytova, Marianna
dc.contributor.authorMorales, Felipe
dc.contributor.authorHaessler, Stefan
dc.contributor.authorSmirnova, Olga
dc.contributor.authorSpanner, Michael
dc.contributor.authorIvanov, Misha
dc.date.accessioned2021-11-29T14:51:26Z
dc.date.available2021-11-29T14:51:26Z
dc.date.issued2020
dc.description.abstractIn standard lasers, light amplification requires population inversion between an upper and a lower state to break the reciprocity between absorption and stimulated emission. However, in a medium prepared in a specific superposition state, quantum interference may fully suppress absorption while leaving stimulated emission intact, opening the possibility of lasing without inversion. Here we show that lasing without inversion arises naturally during propagation of intense femtosecond laser pulses in air. It is triggered by the combination of molecular ionization and molecular alignment, both unavoidable in intense light fields. The effect could enable inversionless amplification of broadband radiation in many molecular gases, opening unusual opportunities for remote sensing. © 2020 Optical Society of Americaeng
dc.description.versionpublishedVersioneng
dc.identifier.urihttps://oa.tib.eu/renate/handle/123456789/7555
dc.identifier.urihttps://doi.org/10.34657/6602
dc.language.isoengeng
dc.publisherWashington, DC : OSAeng
dc.relation.doihttps://doi.org/10.1364/OPTICA.390665
dc.relation.essn2334-2536
dc.rights.licenseCC BY 4.0 Unportedeng
dc.rights.urihttps://creativecommons.org/licenses/by/4.0/eng
dc.subject.ddc530eng
dc.subject.ddc620eng
dc.subject.otherlasereng
dc.subject.otherquantum interferenceeng
dc.subject.othermolecular ionizationeng
dc.titleRotational quantum beat lasing without inversioneng
dc.typeArticleeng
dc.typeTexteng
tib.accessRightsopenAccesseng
wgl.contributorMBIeng
wgl.subjectPhysikeng
wgl.typeZeitschriftenartikeleng
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