<?xml version='1.0' encoding='UTF-8'?><codeBook xmlns="ddi:codebook:2_5" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xsi:schemaLocation="ddi:codebook:2_5 https://ddialliance.org/Specification/DDI-Codebook/2.5/XMLSchema/codebook.xsd" version="2.5"><docDscr><citation><titlStmt><titl>Reversible control of magnetism in FeRh thin films</titl><IDNo agency="handle">hdl:21.15109/CONCORDA/83J6T0</IDNo></titlStmt><distStmt><distrbtr source="archive">ARP</distrbtr><distDate>2021-12-03</distDate></distStmt><verStmt source="archive"><version date="2024-03-25" type="RELEASED">2</version></verStmt><biblCit>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]</biblCit></citation></docDscr><stdyDscr><citation><titlStmt><titl>Reversible control of magnetism in FeRh thin films</titl><IDNo agency="handle">hdl:21.15109/CONCORDA/83J6T0</IDNo></titlStmt><rspStmt><AuthEnty affiliation="1) Wigner Research Centre for Physics, 2) Centre for Energy Research">Merkel, Dániel G.</AuthEnty><AuthEnty affiliation="Wigner Research Centre for Physics">Lengyel, Attila</AuthEnty><AuthEnty affiliation="Wigner Research Centre for Physics">Nagy, Dénes Lajos</AuthEnty><AuthEnty affiliation="Wigner Research Centre for Physics">Németh, Attila</AuthEnty><AuthEnty affiliation="Centre for Energy Research">Horváth, Zsolt E.</AuthEnty><AuthEnty affiliation="Wigner Research Centre for Physics">Bogdán, Csilla</AuthEnty><AuthEnty affiliation="Institute of Chemistry, Eötvös Loránd University">Gracheva, Maria A.</AuthEnty><AuthEnty affiliation="Wigner Research Centre for Physics">Hegedűs, Gergő</AuthEnty><AuthEnty affiliation="Wigner Research Centre for Physics">Sajti, Szilárd</AuthEnty><AuthEnty affiliation="Centre for Energy Research">Radnóczi Z. György</AuthEnty><AuthEnty affiliation="Wigner Research Centre for Physics">Szilágyi Edit</AuthEnty></rspStmt><prodStmt/><distStmt><distrbtr source="archive">ARP</distrbtr><contact affiliation="Wigner Research Centre for Physics" email="kutnyanszky.aniko@wigner.hu">Kutnyánszky, Anikó</contact><depositr>Kutnyánszky, Anikó</depositr><depDate>2021-06-15</depDate></distStmt><holdings URI="https://hdl.handle.net/21.15109/CONCORDA/83J6T0"/></citation><stdyInfo><subject><keyword xml:lang="en">Physics</keyword><keyword>Information storage, Materials for devices, Nanoscale devices, Nanoscale materials</keyword><keyword>fakeDoiMigrationDone</keyword></subject><abstract date="2021-06-15">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.</abstract><sumDscr/></stdyInfo><method><dataColl><sources/></dataColl><anlyInfo/></method><dataAccs><setAvail/><useStmt/><notes type="DVN:TOA" level="dv">Kérelem alapján.</notes></dataAccs><othrStdyMat><relPubl><citation><titlStmt><titl>Merkel, D.G., Lengyel, A., Nagy, D.L. et al. Reversible control of magnetism in FeRh thin films. Sci Rep 10, 13923 (2020).</titl><IDNo agency="doi">10.1038/s41598-020-70899-x</IDNo></titlStmt><biblCit>Merkel, D.G., Lengyel, A., Nagy, D.L. et al. Reversible control of magnetism in FeRh thin films. 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