Ultrafast signatures of spin and orbital order in antiferromagnetic α-Sr2CrO4

Strongly correlated electron systems, such as the chromates, can exhibit a range of unique electronic configurations, the phase diagram of which can become even richer when considering non-equilibrium properties. Here, the authors apply ultrafast optical spectroscopy to α-Sr2CrO4 in order to investi...

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Main Authors: Min-Cheol Lee, Connor Occhialini, Jiarui Li, Zhihai Zhu, Nicholas S. Sirica, L. T. Mix, Soyeun Kim, Dmitry A. Yarotski, Riccardo Comin, Rohit P. Prasankumar
Format: Article
Language:English
Published: Nature Portfolio 2022-12-01
Series:Communications Physics
Online Access:https://doi.org/10.1038/s42005-022-01110-y
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author Min-Cheol Lee
Connor Occhialini
Jiarui Li
Zhihai Zhu
Nicholas S. Sirica
L. T. Mix
Soyeun Kim
Dmitry A. Yarotski
Riccardo Comin
Rohit P. Prasankumar
author_facet Min-Cheol Lee
Connor Occhialini
Jiarui Li
Zhihai Zhu
Nicholas S. Sirica
L. T. Mix
Soyeun Kim
Dmitry A. Yarotski
Riccardo Comin
Rohit P. Prasankumar
author_sort Min-Cheol Lee
collection DOAJ
description Strongly correlated electron systems, such as the chromates, can exhibit a range of unique electronic configurations, the phase diagram of which can become even richer when considering non-equilibrium properties. Here, the authors apply ultrafast optical spectroscopy to α-Sr2CrO4 in order to investigate its spin and orbital ordering dynamics and the changes that occur when varying the pump photon energy.
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spelling doaj.art-12ff277b00a648bfbb89bbb5b329bac12022-12-25T12:18:58ZengNature PortfolioCommunications Physics2399-36502022-12-01511610.1038/s42005-022-01110-yUltrafast signatures of spin and orbital order in antiferromagnetic α-Sr2CrO4Min-Cheol Lee0Connor Occhialini1Jiarui Li2Zhihai Zhu3Nicholas S. Sirica4L. T. Mix5Soyeun Kim6Dmitry A. Yarotski7Riccardo Comin8Rohit P. Prasankumar9Center for Integrated Nanotechnologies, Los Alamos National LaboratoryDepartment of Physics, Massachusetts Institute of TechnologyDepartment of Physics, Massachusetts Institute of TechnologyDepartment of Physics, Massachusetts Institute of TechnologyCenter for Integrated Nanotechnologies, Los Alamos National LaboratoryCenter for Integrated Nanotechnologies, Los Alamos National LaboratoryDepartment of Physics, University of Illinois at Urbana-ChampaignCenter for Integrated Nanotechnologies, Los Alamos National LaboratoryDepartment of Physics, Massachusetts Institute of TechnologyCenter for Integrated Nanotechnologies, Los Alamos National LaboratoryStrongly correlated electron systems, such as the chromates, can exhibit a range of unique electronic configurations, the phase diagram of which can become even richer when considering non-equilibrium properties. Here, the authors apply ultrafast optical spectroscopy to α-Sr2CrO4 in order to investigate its spin and orbital ordering dynamics and the changes that occur when varying the pump photon energy.https://doi.org/10.1038/s42005-022-01110-y
spellingShingle Min-Cheol Lee
Connor Occhialini
Jiarui Li
Zhihai Zhu
Nicholas S. Sirica
L. T. Mix
Soyeun Kim
Dmitry A. Yarotski
Riccardo Comin
Rohit P. Prasankumar
Ultrafast signatures of spin and orbital order in antiferromagnetic α-Sr2CrO4
Communications Physics
title Ultrafast signatures of spin and orbital order in antiferromagnetic α-Sr2CrO4
title_full Ultrafast signatures of spin and orbital order in antiferromagnetic α-Sr2CrO4
title_fullStr Ultrafast signatures of spin and orbital order in antiferromagnetic α-Sr2CrO4
title_full_unstemmed Ultrafast signatures of spin and orbital order in antiferromagnetic α-Sr2CrO4
title_short Ultrafast signatures of spin and orbital order in antiferromagnetic α-Sr2CrO4
title_sort ultrafast signatures of spin and orbital order in antiferromagnetic α sr2cro4
url https://doi.org/10.1038/s42005-022-01110-y
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