Fe1-xRhx layers are grown with varying rhodium fraction x on (001)-oriented MgO substrates by molecular-beam epitaxy. Film structural, morphological, magnetic, and transport properties are investigated. At room temperature, layers are ferromagnetic (FM) for x< 0.48 and antiferromagnetic (AF) for x> 0.48. Separating the two magnetically ordered phases at x = 0.48 is an abrupt change in the Fe1-xRhx lattice parameter of Delta a = 0.0028 nm (Delta a/a = -0.9%). For AF layers, the FM state is recovered by heating across a first-order phase transition. The transition leads to a large resistivity modulation, Delta rho/rho = 80%, over a narrow temperature range, Delta T = 3K, in stoichiometric Fe0.50Rh0.50/MgO(001). For samples with compositions deviating from x = 0.50, fluctuations broaden DT and defect scattering reduces Delta rho/rho. Published by AIP Publishing.
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TOSHIBA CO LTD,CTR RES & DEV,ADV RES LAB,SAIWAI KU,KAWASAKI,KANAGAWA,JAPANTOSHIBA CO LTD,CTR RES & DEV,ADV RES LAB,SAIWAI KU,KAWASAKI,KANAGAWA,JAPAN
HIGHMORE, RJ
YUSU, K
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TOSHIBA CO LTD,CTR RES & DEV,ADV RES LAB,SAIWAI KU,KAWASAKI,KANAGAWA,JAPANTOSHIBA CO LTD,CTR RES & DEV,ADV RES LAB,SAIWAI KU,KAWASAKI,KANAGAWA,JAPAN
YUSU, K
OKUNO, SN
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TOSHIBA CO LTD,CTR RES & DEV,ADV RES LAB,SAIWAI KU,KAWASAKI,KANAGAWA,JAPANTOSHIBA CO LTD,CTR RES & DEV,ADV RES LAB,SAIWAI KU,KAWASAKI,KANAGAWA,JAPAN
OKUNO, SN
SAITO, Y
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TOSHIBA CO LTD,CTR RES & DEV,ADV RES LAB,SAIWAI KU,KAWASAKI,KANAGAWA,JAPANTOSHIBA CO LTD,CTR RES & DEV,ADV RES LAB,SAIWAI KU,KAWASAKI,KANAGAWA,JAPAN
SAITO, Y
INOMATA, K
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TOSHIBA CO LTD,CTR RES & DEV,ADV RES LAB,SAIWAI KU,KAWASAKI,KANAGAWA,JAPANTOSHIBA CO LTD,CTR RES & DEV,ADV RES LAB,SAIWAI KU,KAWASAKI,KANAGAWA,JAPAN