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Single-Mode Emission by Phase-Delayed Coupling Between Nanolasers

 
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cris.virtual.orcid0000-0001-9241-5585
cris.virtual.orcid0000-0003-0111-431X
cris.virtualsource.department12ae262f-b1ef-4d0c-8e34-dd5d0dbb92b6
cris.virtualsource.departmenta39950ea-139d-4948-88a0-4ebbc31bf75e
cris.virtualsource.departmentba97b4e2-c6d5-45c4-b9b4-75cedecd7d74
cris.virtualsource.orcid12ae262f-b1ef-4d0c-8e34-dd5d0dbb92b6
cris.virtualsource.orcida39950ea-139d-4948-88a0-4ebbc31bf75e
cris.virtualsource.orcidba97b4e2-c6d5-45c4-b9b4-75cedecd7d74
dc.contributor.authorRaziman, T. V.
dc.contributor.authorFischer, Anna
dc.contributor.authorNori, Riccardo
dc.contributor.authorChan, Anthony
dc.contributor.authorNg, Wai Kit
dc.contributor.authorSaxena, Dhruv
dc.contributor.authorHess, Ortwin
dc.contributor.authorMolkens, Korneel
dc.contributor.authorTanghe, Ivo
dc.contributor.authorGeiregat, Pieter
dc.contributor.authorVan Thourhout, Dries
dc.contributor.authorBarahona, Mauricio
dc.contributor.authorSapienza, Riccardo
dc.contributor.imecauthorMolkens, Korneel
dc.contributor.imecauthorTanghe, Ivo
dc.contributor.imecauthorVan Thourhout, Dries
dc.contributor.orcidimecTanghe, Ivo::0000-0001-9241-5585
dc.contributor.orcidimecVan Thourhout, Dries::0000-0003-0111-431X
dc.date.accessioned2025-05-13T05:01:39Z
dc.date.available2025-05-13T05:01:39Z
dc.date.issued2025
dc.description.abstractNear-field coupling between nanolasers enables collective high-power lasing but leads to complex spectral reshaping and multimode operation, limiting the emission brightness, spatial coherence, and temporal stability. Many lasing architectures have been proposed to circumvent this limitation based on symmetries, topology, or interference. We show that a much simpler and robust method exploiting phase-delayed coupling, where light exchanged by the lasers carries a phase, can enable stable single-mode operation. Phase-delayed coupling changes the modal amplification: for pump powers close to the anyonic parity-time (PT) symmetric exceptional point, a high phase delay completely separates the mode thresholds, leading to single-mode operation. This is shown by stability analysis with nonlinear coupled mode theory and stochastic differential equations for two coupled nanolasers and confirmed by a realistic semianalytical treatment of a dimer of lasing nanospheres. Finally, we extend the mode control to large arrays of nanolasers featuring lowered thresholds and higher power. Our work promises a novel solution to engineer bright and stable single-mode lasing from nanolaser arrays with important applications in photonic chips for communication and LIDAR.
dc.description.wosFundingTextWe acknowledge computational resources and support provided by the Imperial College Research Computing Service (10.14469/hpc/2232). T.V.R., D.S., and R.S. acknowledge support from the Engineering and Physical Sciences Research Council (EPSRC), grant number EP/T027258 and EP/Y015673. A.F. acknowledges support from the EU ITN EID project CORAL (GA no. 859841). O.H. acknowledges financial support from the Science Foundation Ireland (SFI) via grant number 18/RP/6236. W.K.N. acknowledges the research support funded by the President's PhD Scholarships from Imperial College London. K.M., I.T., P.G., and D.V.T. acknowledge the FWO-Vlaanderen for research funding (FWO Projects Nos. G0B2921N and G0C5723N).
dc.identifier.doi10.1021/acsphotonics.4c01230
dc.identifier.issn2330-4022
dc.identifier.urihttps://imec-publications.be/handle/20.500.12860/45654
dc.publisherAMER CHEMICAL SOC
dc.source.beginpage2337
dc.source.endpage2343
dc.source.issue5
dc.source.journalACS PHOTONICS
dc.source.numberofpages7
dc.source.volume12
dc.subject.keywordsMICRODISK LASERS
dc.subject.keywordsPHOTONICS
dc.subject.keywordsSYMMETRY
dc.title

Single-Mode Emission by Phase-Delayed Coupling Between Nanolasers

dc.typeJournal article
dspace.entity.typePublication
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