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The impact of strain on the GeV-color center in diamond

 
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cris.virtual.orcid0000-0001-6711-7367
cris.virtual.orcid0000-0001-8741-4908
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cris.virtual.orcid0000-0001-8136-5172
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cris.virtualsource.department9797fc7c-c7f6-4749-9de8-954bb4c197ca
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cris.virtualsource.orcid9797fc7c-c7f6-4749-9de8-954bb4c197ca
dc.contributor.authorvan Wijk, Thijs G. I.
dc.contributor.authorMelan, E. Aylin
dc.contributor.authorMary Joy, Rani
dc.contributor.authorGuillaume, Emerick Y.
dc.contributor.authorPobedinskas, Paulius
dc.contributor.authorHaenen, Ken
dc.contributor.authorVanpoucke, Danny
dc.contributor.imecauthorvan Wijk, Thijs G. I.
dc.contributor.imecauthorJoy, Rani Mary
dc.contributor.imecauthorGuillaume, Emerick Y.
dc.contributor.imecauthorPobedinskas, Paulius
dc.contributor.imecauthorHaenen, Ken
dc.contributor.imecauthorVanpoucke, Danny E. P.
dc.contributor.orcidimecPobedinskas, Paulius::0000-0001-8136-5172
dc.contributor.orcidimecHaenen, Ken::0000-0001-6711-7367
dc.date.accessioned2025-02-08T22:12:09Z
dc.date.available2025-02-08T22:12:09Z
dc.date.issued2025
dc.description.abstractColor centers in diamond, such as the GeV center, are promising candidates for quantum-based applications. Here, we investigate the impact of strain on the zero-phonon line (ZPL) position of GeV. Both hydrostatic and linear strain are modeled using density functional theory for GeV concentrations of 1.61 % down to 0.10 %. We present qualitative and quantitative differences between the two strain types: for hydrostatic tensile and compressive strain, red- and blue-shifted ZPL positions are expected, respectively, with a linear relation between the ZPL shift and the experienced stress. By calculating the ZPL shift for varying GeV concentrations, a shift of 0.15 nm/GPa (0.38 meV/GPa) is obtained at experimentally relevant concentrations using a hybrid functional. In contrast, only red-shifted ZPL are found for tensile and compressive linear strain along the direction. The calculated ZPL shift exceeds that of hydrostatic strain by at least one order of magnitude, with a significant difference between tensile and compressive strains: 3.2 and 4.8 nm/GPa (8.1 and 11.7 meV/GPa), respectively. In addition, a peak broadening is expected due to the lifted degeneracy of the GeV state, calculated to be about 6 meV/GPa. These calculated results are placed in perspective with experimental observations, showing values of ZPL shifts and splittings of comparable magnitude.
dc.description.wosFundingTextThe authors wish to thank an anonymous reviewer for the helpful comments and DEPV thanks Vadim Sedov for the fruitful discussions on the subject of defects in diamond. This work was financially supported by the Special Research Fund (BOF) via the BOF project, Belgium R14181, the Methusalem NANO network, interuniversity BOF, Belgium (BOF 23IU12) , Research Foundation Flanders (FWO) projects, Belgium G0D1721N and G0A0520N. The computational resources and services used in this work were provided by the VSC (Flemish Supercomputer Center) , funded by the FWO, Belgium and the Flemish Government-department EWI, Belgium.
dc.identifier.doi10.1016/j.carbon.2024.119928
dc.identifier.issn0008-6223
dc.identifier.urihttps://imec-publications.be/handle/20.500.12860/45182
dc.publisherPERGAMON-ELSEVIER SCIENCE LTD
dc.source.beginpage119928
dc.source.issue5 March
dc.source.journalCARBON
dc.source.numberofpages9
dc.source.volume234
dc.subject.keywordsEXTENDING HIRSHFELD-I
dc.subject.keywordsVACANCY
dc.subject.keywordsLUMINESCENCE
dc.subject.keywordsBULK
dc.title

The impact of strain on the GeV-color center in diamond

dc.typeJournal article
dspace.entity.typePublication
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