High Magnetic Field Studies of the Hidden Order Transition in [Formula presented]

We studied in detail the low temperature/high magnetic field phases of [Formula presented] single crystals with specific heat, magnetocaloric effect, and magnetoresistance in magnetic fields up to 45 T. Data obtained down to 0.5 K, and extrapolated to [Formula presented], show a suppression of the h...

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Autores principales: Jaime, M., Kim, K.H., Jorge, G., McCall, S., Mydosh, J.A.
Formato: JOUR
Acceso en línea:http://hdl.handle.net/20.500.12110/paper_00319007_v89_n28_p_Jaime
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spelling todo:paper_00319007_v89_n28_p_Jaime2023-10-03T14:43:07Z High Magnetic Field Studies of the Hidden Order Transition in [Formula presented] Jaime, M. Kim, K.H. Jorge, G. McCall, S. Mydosh, J.A. We studied in detail the low temperature/high magnetic field phases of [Formula presented] single crystals with specific heat, magnetocaloric effect, and magnetoresistance in magnetic fields up to 45 T. Data obtained down to 0.5 K, and extrapolated to [Formula presented], show a suppression of the hidden-order phase at [Formula presented] and the appearance of a new phase for magnetic fields in excess of [Formula presented] observed only at temperatures lower than 6 K. In turn, complete suppression of this high field state is attained at a critical magnetic field [Formula presented]. No phase transitions are observed above 40 T. We discuss our results in the context of itinerant versus localized [Formula presented] electrons. © 2002 The American Physical Society. JOUR info:eu-repo/semantics/openAccess http://creativecommons.org/licenses/by/2.5/ar http://hdl.handle.net/20.500.12110/paper_00319007_v89_n28_p_Jaime
institution Universidad de Buenos Aires
institution_str I-28
repository_str R-134
collection Biblioteca Digital - Facultad de Ciencias Exactas y Naturales (UBA)
description We studied in detail the low temperature/high magnetic field phases of [Formula presented] single crystals with specific heat, magnetocaloric effect, and magnetoresistance in magnetic fields up to 45 T. Data obtained down to 0.5 K, and extrapolated to [Formula presented], show a suppression of the hidden-order phase at [Formula presented] and the appearance of a new phase for magnetic fields in excess of [Formula presented] observed only at temperatures lower than 6 K. In turn, complete suppression of this high field state is attained at a critical magnetic field [Formula presented]. No phase transitions are observed above 40 T. We discuss our results in the context of itinerant versus localized [Formula presented] electrons. © 2002 The American Physical Society.
format JOUR
author Jaime, M.
Kim, K.H.
Jorge, G.
McCall, S.
Mydosh, J.A.
spellingShingle Jaime, M.
Kim, K.H.
Jorge, G.
McCall, S.
Mydosh, J.A.
High Magnetic Field Studies of the Hidden Order Transition in [Formula presented]
author_facet Jaime, M.
Kim, K.H.
Jorge, G.
McCall, S.
Mydosh, J.A.
author_sort Jaime, M.
title High Magnetic Field Studies of the Hidden Order Transition in [Formula presented]
title_short High Magnetic Field Studies of the Hidden Order Transition in [Formula presented]
title_full High Magnetic Field Studies of the Hidden Order Transition in [Formula presented]
title_fullStr High Magnetic Field Studies of the Hidden Order Transition in [Formula presented]
title_full_unstemmed High Magnetic Field Studies of the Hidden Order Transition in [Formula presented]
title_sort high magnetic field studies of the hidden order transition in [formula presented]
url http://hdl.handle.net/20.500.12110/paper_00319007_v89_n28_p_Jaime
work_keys_str_mv AT jaimem highmagneticfieldstudiesofthehiddenordertransitioninformulapresented
AT kimkh highmagneticfieldstudiesofthehiddenordertransitioninformulapresented
AT jorgeg highmagneticfieldstudiesofthehiddenordertransitioninformulapresented
AT mccalls highmagneticfieldstudiesofthehiddenordertransitioninformulapresented
AT mydoshja highmagneticfieldstudiesofthehiddenordertransitioninformulapresented
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