1 to 10 of 238 Results
Apr 29, 2026 - Semiconductor Nanostructures Research Group
Mohseni, Meysam; Thiering, Gergő; Gali, Adam, 2026, "Replication Data for: Magneto-optical properties of the neutral silicon-vacancy center in diamond under extreme isotropic strain fields", https://hdl.handle.net/21.15109/ARP/SLO47J, ARP, V1
This dataset accompanies the research article titled Magneto-optical properties of the neutral silicon-vacancy center in diamond under extreme isotropic strain fields. |
Apr 29, 2026 -
Replication Data for: Magneto-optical properties of the neutral silicon-vacancy center in diamond under extreme isotropic strain fields
OpenOffice Spreadsheet - 33.8 KB -
MD5: 684ff11ddae1b6d24832110315e876df
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Apr 29, 2026 -
Replication Data for: Magneto-optical properties of the neutral silicon-vacancy center in diamond under extreme isotropic strain fields
OpenOffice Spreadsheet - 29.1 KB -
MD5: 582c8aff9e7fdf6d8cf6590fe0011130
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Apr 29, 2026 -
Replication Data for: Magneto-optical properties of the neutral silicon-vacancy center in diamond under extreme isotropic strain fields
Plain Text - 1.0 KB -
MD5: 50d7a75b9f1352fc380800d24695d5c9
This is a read me file |
Apr 29, 2026 -
Replication Data for: Magneto-optical properties of the neutral silicon-vacancy center in diamond under extreme isotropic strain fields
Comma Separated Values - 131 B -
MD5: 6cd1906c9ad63a91f3889378ded77dcb
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Apr 29, 2026 -
Replication Data for: Magneto-optical properties of the neutral silicon-vacancy center in diamond under extreme isotropic strain fields
OpenOffice Spreadsheet - 39.7 KB -
MD5: 9567b8f8ec7d95ca587172e0fa7a439d
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Mar 10, 2026 - Laboratory for Advanced Structural Studies
Botka, Bea; Dodony, Erzsébet; Németh; Stratton, Michael; Harsányi, Ildikó; Mózer, János; Kováts, Éva; Borondics, Ferenc; Kamarás, Katalin, 2026, "Emissive perovskite nanowires in robust nanocontainers - dataset", https://hdl.handle.net/21.15109/ARP/2CI6QD, ARP, V1
Dataset for publication: Emissive perovskite nanowires in robust nanocontainers: CsPbX3 confined inside boron nitride nanotubes Nanoscale, 2026 DOI https://doi.org/10.1039/D5NR05217C |
application/x-font-ghostscript - 3.8 MB -
MD5: cf7891765109a929bfccba6b5d77e245
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PNG Image - 4.8 MB -
MD5: 57ef65f6d0a498ccffc98c53e645309c
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PNG Image - 4.5 MB -
MD5: 88b11223ae11d04d2d9281c1c3a76956
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