{"id":254602,"identifier":"PT4R3F","persistentUrl":"https://doi.org/10.18710/PT4R3F","protocol":"doi","authority":"10.18710","separator":"/","publisher":"DataverseNO","publicationDate":"2025-08-07","storageIdentifier":"S3://10.18710/PT4R3F","datasetType":"dataset","datasetVersion":{"id":5706,"datasetId":254602,"datasetPersistentId":"doi:10.18710/PT4R3F","storageIdentifier":"S3://10.18710/PT4R3F","versionNumber":2,"versionMinorNumber":1,"versionState":"RELEASED","latestVersionPublishingState":"RELEASED","lastUpdateTime":"2026-05-08T07:55:16Z","releaseTime":"2026-05-08T07:55:16Z","createTime":"2026-05-08T07:14:14Z","publicationDate":"2025-08-07","citationDate":"2025-08-07","license":{"name":"CC BY-SA 4.0","uri":"http://creativecommons.org/licenses/by-sa/4.0","iconUri":"https://licensebuttons.net/l/by-sa/4.0/88x31.png","rightsIdentifier":"CC-BY-SA-4.0","rightsIdentifierScheme":"SPDX","schemeUri":"https://spdx.org/licenses/","languageCode":"en"},"fileAccessRequest":true,"metadataBlocks":{"citation":{"displayName":"Citation Metadata","name":"citation","fields":[{"typeName":"title","multiple":false,"typeClass":"primitive","value":"Data for LIQUID-H"},{"typeName":"author","multiple":true,"typeClass":"compound","value":[{"authorName":{"typeName":"authorName","multiple":false,"typeClass":"primitive","value":"Lunde, Vilde Gahr Sturtzel"},"authorAffiliation":{"typeName":"authorAffiliation","multiple":false,"typeClass":"primitive","value":"Institute for Energy Technology"},"authorIdentifierScheme":{"typeName":"authorIdentifierScheme","multiple":false,"typeClass":"controlledVocabulary","value":"ORCID"},"authorIdentifier":{"typeName":"authorIdentifier","multiple":false,"typeClass":"primitive","value":"0009-0008-5024-5168"}}]},{"typeName":"datasetContact","multiple":true,"typeClass":"compound","value":[{"datasetContactName":{"typeName":"datasetContactName","multiple":false,"typeClass":"primitive","value":"Lunde, Vilde Gahr Sturtzel"},"datasetContactAffiliation":{"typeName":"datasetContactAffiliation","multiple":false,"typeClass":"primitive","value":"Institute for Energy Technology"},"datasetContactEmail":{"typeName":"datasetContactEmail","multiple":false,"typeClass":"primitive","value":"vilde.lunde@ife.no"}},{"datasetContactName":{"typeName":"datasetContactName","multiple":false,"typeClass":"primitive","value":"Frommen, Christoph"},"datasetContactAffiliation":{"typeName":"datasetContactAffiliation","multiple":false,"typeClass":"primitive","value":"Institute for Energy Technology"},"datasetContactEmail":{"typeName":"datasetContactEmail","multiple":false,"typeClass":"primitive","value":"christoph.frommen@ife.no"}}]},{"typeName":"dsDescription","multiple":true,"typeClass":"compound","value":[{"dsDescriptionValue":{"typeName":"dsDescriptionValue","multiple":false,"typeClass":"primitive","value":"This dataset contains experimental raw data for the publications: \n- Vilde G. S. Lunde, Benedicte S. Ofstad, Øystein S. Fjellvåg, Philippe Ohresser, Anja O. Sjåstad, Bjørn C. Hauback, and Christoph Frommen. Electronic and magnetic properties of light rare-earth cubic Laves compounds derived from x-ray magnetic circular dichroism experiments. Physical Review B 112, 224413 (2025).\nThe dataset contains raw data from the Deimos instrument (https://synchrotron-soleil.fr/en/beamlines/deimos) at the Soleil synchrotron, France. The instrument is dedicated to the study of magnetic and electronic properties using polarized light (XMCD). Additionally, the dataset contains raw data produced using density-functional theory and multiplet theory calculations, as well as X-ray diffraction data measured using an in-house Bruker D2 diffractometer.\n\n- Vilde G. S. Lunde, Øystein S. Fjellvåg, Allan M. Döring, Marc Straßheim, Vladimir Pomjakushin, Konstantin P. Skokov, Oliver Gutfleisch, Tino Gottschall, Joachim Wosnitza, Anja O. Sjåstad, Bjørn C. Hauback, and Christoph Frommen. \nInfluence of Ni substitution on the phase transitions and magnetocaloric effect of NdCo2. Submitted for review. (2025)\nThe dataset contains raw data from the high-resolution powder diffractometer for thermal neutrons at the Swiss Spallation Neutron Source at the Paul Scherrer Institute, Villigen, Switzerland. Additionally, the dataset contains raw X-ray diffraction data collected at BM01 at the Swiss-Norwegian Beamlines of the European Synchrotron Radiation Facility in Grenoble, France. Additionally, bulk magnetization data and pulsed-field measurement data are included."},"dsDescriptionDate":{"typeName":"dsDescriptionDate","multiple":false,"typeClass":"primitive","value":"2025-07-03"}}]},{"typeName":"subject","multiple":true,"typeClass":"controlledVocabulary","value":["Chemistry","Physics"]},{"typeName":"keyword","multiple":true,"typeClass":"compound","value":[{"keywordValue":{"typeName":"keywordValue","multiple":false,"typeClass":"primitive","value":"X-ray magnetic circular dichroism"}},{"keywordValue":{"typeName":"keywordValue","multiple":false,"typeClass":"primitive","value":"X-ray diffraction"}},{"keywordValue":{"typeName":"keywordValue","multiple":false,"typeClass":"primitive","value":"Density-functional theory"}},{"keywordValue":{"typeName":"keywordValue","multiple":false,"typeClass":"primitive","value":"Multiplet theory"}},{"keywordValue":{"typeName":"keywordValue","multiple":false,"typeClass":"primitive","value":"Neutron diffraction"}},{"keywordValue":{"typeName":"keywordValue","multiple":false,"typeClass":"primitive","value":"Bulk magnetization"}},{"keywordValue":{"typeName":"keywordValue","multiple":false,"typeClass":"primitive","value":"Pulsed-fields"}}]},{"typeName":"publication","multiple":true,"typeClass":"compound","value":[{"publicationRelationType":{"typeName":"publicationRelationType","multiple":false,"typeClass":"controlledVocabulary","value":"IsSupplementTo"},"publicationCitation":{"typeName":"publicationCitation","multiple":false,"typeClass":"primitive","value":"Vilde G. S. Lunde, Benedicte S. Ofstad, Øystein S. Fjellvåg, Philippe Ohresser, Anja O. Sjåstad, Bjørn C. Hauback, and Christoph Frommen. Electronic and magnetic properties of light rare-earth cubic Laves compounds derived from XMCD experiments. Submitted to for review."},"publicationIDType":{"typeName":"publicationIDType","multiple":false,"typeClass":"controlledVocabulary","value":"doi"},"publicationIDNumber":{"typeName":"publicationIDNumber","multiple":false,"typeClass":"primitive","value":"10.1103/hf2c-46t3"},"publicationURL":{"typeName":"publicationURL","multiple":false,"typeClass":"primitive","value":"https://doi.org/10.1103/hf2c-46t3"}},{"publicationRelationType":{"typeName":"publicationRelationType","multiple":false,"typeClass":"controlledVocabulary","value":"IsSupplementTo"},"publicationCitation":{"typeName":"publicationCitation","multiple":false,"typeClass":"primitive","value":"Vilde G. S. Lunde, Øystein S. Fjellvåg, Allan M. Döring, Marc Straßheim, Vladimir Pomjakushin, Konstantin P. Skokov, Oliver Gutfleisch, Tino Gottschall, Joachim Wosnitza, Anja O. Sjåstad, Bjørn C. Hauback, and Christoph Frommen. \nInfluence of Ni substitution on the phase transitions and magnetocaloric effect of NdCo2. Submitted for review."}}]},{"typeName":"language","multiple":true,"typeClass":"controlledVocabulary","value":["English"]},{"typeName":"producer","multiple":true,"typeClass":"compound","value":[{"producerName":{"typeName":"producerName","multiple":false,"typeClass":"primitive","value":"Lunde, Vilde Gahr Sturtzel"},"producerAffiliation":{"typeName":"producerAffiliation","multiple":false,"typeClass":"primitive","value":"Institute for Energy Technology"}},{"producerName":{"typeName":"producerName","multiple":false,"typeClass":"primitive","value":"Frommen, Christoph"},"producerAffiliation":{"typeName":"producerAffiliation","multiple":false,"typeClass":"primitive","value":"Institute for Energy Technology"}},{"producerName":{"typeName":"producerName","multiple":false,"typeClass":"primitive","value":"Ofstad, Benedicte"},"producerAffiliation":{"typeName":"producerAffiliation","multiple":false,"typeClass":"primitive","value":"Institute for Energy Technology"}},{"producerName":{"typeName":"producerName","multiple":false,"typeClass":"primitive","value":"Straßheim, Marc"},"producerAffiliation":{"typeName":"producerAffiliation","multiple":false,"typeClass":"primitive","value":"Dresden High Magnetic Field Laborator"}},{"producerName":{"typeName":"producerName","multiple":false,"typeClass":"primitive","value":"Döring, Allan"},"producerAffiliation":{"typeName":"producerAffiliation","multiple":false,"typeClass":"primitive","value":"Technical University of Darmstadt"}}]},{"typeName":"grantNumber","multiple":true,"typeClass":"compound","value":[{"grantNumberAgency":{"typeName":"grantNumberAgency","multiple":false,"typeClass":"primitive","value":"The Research Council of Norway"},"grantNumberValue":{"typeName":"grantNumberValue","multiple":false,"typeClass":"primitive","value":"336403"}}]},{"typeName":"distributor","multiple":true,"typeClass":"compound","value":[{"distributorName":{"typeName":"distributorName","multiple":false,"typeClass":"primitive","value":"DataverseNO"},"distributorAffiliation":{"typeName":"distributorAffiliation","multiple":false,"typeClass":"primitive","value":"Institute for Energy Technology"},"distributorURL":{"typeName":"distributorURL","multiple":false,"typeClass":"primitive","value":"https://dataverse.no/"}}]},{"typeName":"depositor","multiple":false,"typeClass":"primitive","value":"Lunde, Vilde Gahr Sturtzel"},{"typeName":"dateOfDeposit","multiple":false,"typeClass":"primitive","value":"2025-07-03"},{"typeName":"dateOfCollection","multiple":true,"typeClass":"compound","value":[{"dateOfCollectionStart":{"typeName":"dateOfCollectionStart","multiple":false,"typeClass":"primitive","value":"2024-09-01"},"dateOfCollectionEnd":{"typeName":"dateOfCollectionEnd","multiple":false,"typeClass":"primitive","value":"2025-07-01"}}]},{"typeName":"kindOfData","multiple":true,"typeClass":"primitive","value":["Experimental data"]},{"typeName":"software","multiple":true,"typeClass":"compound","value":[{"softwareName":{"typeName":"softwareName","multiple":false,"typeClass":"primitive","value":"Topas"},"softwareVersion":{"typeName":"softwareVersion","multiple":false,"typeClass":"primitive","value":"V5"}},{"softwareName":{"typeName":"softwareName","multiple":false,"typeClass":"primitive","value":"VASP"},"softwareVersion":{"typeName":"softwareVersion","multiple":false,"typeClass":"primitive","value":"6.4.1"}},{"softwareName":{"typeName":"softwareName","multiple":false,"typeClass":"primitive","value":"Quanty"}},{"softwareName":{"typeName":"softwareName","multiple":false,"typeClass":"primitive","value":"Mag2Pol"},"softwareVersion":{"typeName":"softwareVersion","multiple":false,"typeClass":"primitive","value":"7.2.2"}}]}]}},"files":[{"label":"00_README.txt","restricted":false,"version":1,"datasetVersionId":5706,"dataFile":{"id":265297,"persistentId":"doi:10.18710/PT4R3F/NPPZMC","pidURL":"https://doi.org/10.18710/PT4R3F/NPPZMC","filename":"00_README.txt","contentType":"text/plain","friendlyType":"Plain Text","filesize":9547,"storageIdentifier":"S3://uit-dataverseno-prod01:19b0d8f2025-07dfac91f7bd","rootDataFileId":-1,"md5":"bb31dd8dcb029e4c1782b293ff425c76","checksum":{"type":"MD5","value":"bb31dd8dcb029e4c1782b293ff425c76"},"tabularData":false,"creationDate":"2025-12-11","publicationDate":"2025-12-12","fileAccessRequest":true}},{"description":"All data related to the publication: Vilde G. S. Lunde, et al. Electronic and magnetic properties of light rare-earth cubic Laves compounds derived from x-ray magnetic circular dichroism experiments. Physical Review B 112, 224413 (2025).\n","label":"Electronic and magnetic properties (2025).zip","restricted":false,"version":1,"datasetVersionId":5706,"dataFile":{"id":265295,"persistentId":"doi:10.18710/PT4R3F/ZRPBHY","pidURL":"https://doi.org/10.18710/PT4R3F/ZRPBHY","filename":"Electronic and magnetic properties (2025).zip","contentType":"application/zip","friendlyType":"ZIP Archive","filesize":61946906,"description":"All data related to the publication: Vilde G. S. Lunde, et al. Electronic and magnetic properties of light rare-earth cubic Laves compounds derived from x-ray magnetic circular dichroism experiments. Physical Review B 112, 224413 (2025).\n","storageIdentifier":"S3://uit-dataverseno-prod01:19b0d724b7b-cf0c649af4d4","rootDataFileId":-1,"md5":"dd28876aa8230fd8fa44734b8f45ec21","checksum":{"type":"MD5","value":"dd28876aa8230fd8fa44734b8f45ec21"},"tabularData":false,"creationDate":"2025-12-11","publicationDate":"2025-12-12","fileAccessRequest":true}},{"description":"All data related to the publication: Vilde G. S. Lunde, et al. Influence of Ni substitution on the phase transitions and magnetocaloric effect of NdCo2. Phys. Rev. B 113, 184418 (2026). DOI: https://doi.org/10.1103/drsr-yt3j","label":"Influence of Ni substitution (2025).zip","restricted":false,"version":1,"datasetVersionId":5706,"dataFile":{"id":265298,"persistentId":"doi:10.18710/PT4R3F/D5ZWN3","pidURL":"https://doi.org/10.18710/PT4R3F/D5ZWN3","filename":"Influence of Ni substitution (2025).zip","contentType":"application/zip","friendlyType":"ZIP Archive","filesize":146514101,"description":"All data related to the publication: Vilde G. S. Lunde, et al. Influence of Ni substitution on the phase transitions and magnetocaloric effect of NdCo2. Phys. Rev. B 113, 184418 (2026). DOI: https://doi.org/10.1103/drsr-yt3j","storageIdentifier":"S3://uit-dataverseno-prod01:19b0d917464-12adf72214d0","rootDataFileId":-1,"md5":"357d102bb541fb67d0b78b3ccc70367c","checksum":{"type":"MD5","value":"357d102bb541fb67d0b78b3ccc70367c"},"tabularData":false,"creationDate":"2025-12-11","publicationDate":"2025-12-12","fileAccessRequest":true}}],"citation":"Lunde, Vilde Gahr Sturtzel, 2025, \"Data for LIQUID-H\", https://doi.org/10.18710/PT4R3F, DataverseNO, V2"}}