Synergy effect of temperature, electric and magnetic field on the depth structure of the FeRh/BaTiO3 composite multiferroic (hdl:21.15109/CONCORDA/LUA07J)

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Document Description

Citation

Title:

Synergy effect of temperature, electric and magnetic field on the depth structure of the FeRh/BaTiO3 composite multiferroic

Identification Number:

hdl:21.15109/CONCORDA/LUA07J

Distributor:

ARP

Date of Distribution:

2022-08-18

Version:

2

Bibliographic Citation:

Lengyel, Attila; Bazsó, Gábor; Chumakov, Alexandr I.; Nagy, Dénes L.; Hegedűs, Gergő; Bessas, Dimitrios; Horváth, Zsolt E.; Nemes, Norbert M.; Gracheva, Maria A.; Szilágyi, Edit; Sajti, Szilárd; Merkel, Dániel G., 2022, "Synergy effect of temperature, electric and magnetic field on the depth structure of the FeRh/BaTiO3 composite multiferroic", https://hdl.handle.net/21.15109/CONCORDA/LUA07J, ARP, V2

Study Description

Citation

Title:

Synergy effect of temperature, electric and magnetic field on the depth structure of the FeRh/BaTiO3 composite multiferroic

Identification Number:

hdl:21.15109/CONCORDA/LUA07J

Authoring Entity:

Lengyel, Attila (Wigner Research Centre for Physics)

Bazsó, Gábor (Wigner Research Centre for Physics)

Chumakov, Alexandr I. (ESRF-The European Synchrotron)

Nagy, Dénes L. (Wigner Research Centre for Physics)

Hegedűs, Gergő (Wigner Research Centre for Physics)

Bessas, Dimitrios (ESRF-The European Synchrotron)

Horváth, Zsolt E. (Centre for Energy Research)

Nemes, Norbert M. (Departamento de Física de Materiales, Universidad Complutense de Madrid)

Gracheva, Maria A. (Institute of Chemistry, Eötvös Loránd University)

Szilágyi, Edit (Wigner Research Centre for Physics)

Sajti, Szilárd (Wigner Research Centre for Physics)

Merkel, Dániel G. ((1) Wigner Research Centre for Physics, 2) Centre for Energy Research)

Distributor:

ARP

Access Authority:

Kutnyánszky, Anikó

Depositor:

Szilágyi, Edit

Date of Deposit:

2021-11-07

Holdings Information:

https://hdl.handle.net/21.15109/CONCORDA/LUA07J

Study Scope

Keywords:

Physics, fakeDoiMigrationDone

Abstract:

FeRh based composite multiferroic materials have attracted great scientific interest due to their wide variety of possible applications in future nano device technology. In the recent work, a comprehensive study on the depth dependence of the metamagnetic phase transition in FeRh/BaTiO3 heterostructure is reported by means of single or combined external stimulus such as heat, magnetic or electric field. Grazing-incidence nuclear scattering experiments revealed significant discrepancies in the mechanism of the antiferromagnetic/ferromagnetic reordering induced by the different effects, with distinguished role of both upper and lower interfaces.

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Related Publications

Citation

Title:

Lengyel, Attila; Bazsó, Gábor; Chumakov, Alexandr I.; Nagy, Dénes L.; Hegedűs, Gergő; Bessas, Dimitrios; Horváth, Zsolt E.; Nemes, Norbert M.; Gracheva, Maria A.; Szilágyi, Edit; Sajti, Szilárd; Merkel, Dániel G.: Synergy effect of temperature, electric and magnetic field on the depth structure of the FeRh/BaTiO3 composite multiferroic. Materials Science and Engineering B 285 (2022) 115939

Identification Number:

10.1016/j.mseb.2022.115939

Bibliographic Citation:

Lengyel, Attila; Bazsó, Gábor; Chumakov, Alexandr I.; Nagy, Dénes L.; Hegedűs, Gergő; Bessas, Dimitrios; Horváth, Zsolt E.; Nemes, Norbert M.; Gracheva, Maria A.; Szilágyi, Edit; Sajti, Szilárd; Merkel, Dániel G.: Synergy effect of temperature, electric and magnetic field on the depth structure of the FeRh/BaTiO3 composite multiferroic. Materials Science and Engineering B 285 (2022) 115939

Citation

Title:

Depth Profile of the Phase Transition of the FeRh Alloy in FeRh/BaTiO3 Attila Lengyel, Gábor Bazsó, Aleksandr I. Chumakov, Dénes L. Nagy, Gergő Hegedűs, Dimitrios Bessas, Zsolt E. Horváth, Norbert M. Nemes, Maria A. Gracheva, Edit Szilágyi, Szilárd Sajti, Dániel G. Merkel, arXiv:2110.09219 [cond-mat.mtrl-sci].

Identification Number:

2110.09219

Bibliographic Citation:

Depth Profile of the Phase Transition of the FeRh Alloy in FeRh/BaTiO3 Attila Lengyel, Gábor Bazsó, Aleksandr I. Chumakov, Dénes L. Nagy, Gergő Hegedűs, Dimitrios Bessas, Zsolt E. Horváth, Norbert M. Nemes, Maria A. Gracheva, Edit Szilágyi, Szilárd Sajti, Dániel G. Merkel, arXiv:2110.09219 [cond-mat.mtrl-sci].

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