Reversible control of magnetism in FeRh thin films (hdl:21.15109/CONCORDA/83J6T0)

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Part 1: Document Description
Part 2: Study Description
Part 3: Data Files Description
Part 4: Variable Description
Part 5: Other Study-Related Materials
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Document Description

Citation

Title:

Reversible control of magnetism in FeRh thin films

Identification Number:

hdl:21.15109/CONCORDA/83J6T0

Distributor:

ARP

Date of Distribution:

2021-12-03

Version:

2

Bibliographic Citation:

Merkel, Dániel G.; Lengyel, Attila; Nagy, Dénes Lajos; Németh, Attila; Horváth, Zsolt E.; Bogdán, Csilla; Gracheva, Maria A.; Hegedűs, Gergő; Sajti, Szilárd; Radnóczi Z. György; Szilágyi Edit, 2021, "Reversible control of magnetism in FeRh thin films", https://hdl.handle.net/21.15109/CONCORDA/83J6T0, ARP, V2, UNF:6:Cvr6lrS6zc+AXoY5zRPfYA== [fileUNF]

Study Description

Citation

Title:

Reversible control of magnetism in FeRh thin films

Identification Number:

hdl:21.15109/CONCORDA/83J6T0

Authoring Entity:

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

Lengyel, Attila (Wigner Research Centre for Physics)

Nagy, Dénes Lajos (Wigner Research Centre for Physics)

Németh, Attila (Wigner Research Centre for Physics)

Horváth, Zsolt E. (Centre for Energy Research)

Bogdán, Csilla (Wigner Research Centre for Physics)

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

Hegedűs, Gergő (Wigner Research Centre for Physics)

Sajti, Szilárd (Wigner Research Centre for Physics)

Radnóczi Z. György (Centre for Energy Research)

Szilágyi Edit (Wigner Research Centre for Physics)

Distributor:

ARP

Access Authority:

Kutnyánszky, Anikó

Depositor:

Kutnyánszky, Anikó

Date of Deposit:

2021-06-15

Holdings Information:

https://hdl.handle.net/21.15109/CONCORDA/83J6T0

Study Scope

Keywords:

Physics, Information storage, Materials for devices, Nanoscale devices, Nanoscale materials, fakeDoiMigrationDone

Abstract:

The multilayer of approximate structure MgO(100)/[nFe51Rh49(63 Å)/57Fe51Rh49(46 Å)]10 deposited at 200 °C is primarily of paramagnetic A1 phase and is fully converted to the magnetic B2 phase by annealing at 300 °C for 60 min. Subsequent irradiation by 120 keV Ne+ ions turns the thin film completely to the paramagnetic A1 phase. Repeated annealing at 300 °C for 60 min results in 100% magnetic B2 phase, i.e. a process that appears to be reversible at least twice. The A1 → B2 transformation takes place without any plane-perpendicular diffusion while Ne+ irradiation results in significant interlayer mixing.

Methodology and Processing

Sources Statement

Data Access

Notes:

Kérelem alapján.

Other Study Description Materials

Related Publications

Citation

Title:

Merkel, D.G., Lengyel, A., Nagy, D.L. et al. Reversible control of magnetism in FeRh thin films. Sci Rep 10, 13923 (2020).

Identification Number:

10.1038/s41598-020-70899-x

Bibliographic Citation:

Merkel, D.G., Lengyel, A., Nagy, D.L. et al. Reversible control of magnetism in FeRh thin films. Sci Rep 10, 13923 (2020).

File Description--f8137

File: 00_files.tab

  • Number of cases: 27

  • No. of variables per record: 6

  • Type of File: text/tab-separated-values

Notes:

UNF:6:Cvr6lrS6zc+AXoY5zRPfYA==

Variable Description

List of Variables:

Variables

A

f8137 Location:

Variable Format: character

Notes: UNF:6:TRx2aOi0DAs/KCskKDKK9A==

InstituteforParticleandNuclearPhysicsWingerResearchCentreforPhysicsKonkoly-ThegeMiklósút29-33,1121Budapest,HungaryP.O.Box49,1525Budapest,HungaryPhone:+3613922222(ext.2650),Fax:+3613922650E-mail:merkel.daniel@wigner.huWeb:wigner.hu

f8137 Location:

Variable Format: character

Notes: UNF:6:fY0dIPJNMsBNu1d75w5ZEw==

C

f8137 Location:

Variable Format: character

Notes: UNF:6:RqwkXUpoRaEeG45iukxjxQ==

D

f8137 Location:

Variable Format: character

Notes: UNF:6:X7SSnHGdfXdj/SnnAKnsoA==

E

f8137 Location:

Variable Format: character

Notes: UNF:6:PBqTgip9OhSRjlXiZdbrNg==

F

f8137 Location:

Variable Format: character

Notes: UNF:6:CGyB7mJWcdz75zsW32AlnQ==

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