Search Results - "Kanomata, T"

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  1. 1

    Magnetic-field-induced shape recovery by reverse phase transformation by Okamoto, S, Kitakami, O, Fujita, A, Ishida, K, Kainuma, R, Sutou, Y, Morito, H, Ito, W, Kanomata, T, Imano, Y, Oikawa, K

    Published in Nature (23-02-2006)
    “…Large magnetic-field-induced strains have been observed in Heusler alloys with a body-centred cubic ordered structure and have been explained by the…”
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  2. 2

    Magnetoconduction in the Correlated Semiconductor FeSi in Ultrastrong Magnetic Fields up to a Semiconductor-to-Metal Transition by Nakamura, D., Matsuda, Y. H., Ikeda, A., Miyake, A., Tokunaga, M., Takeyama, S., Kanomata, T.

    Published in Physical review letters (08-10-2021)
    “…Magnetoresistance of the correlated narrow-gap semiconductor FeSi was investigated by the radio frequency self-resonant spiral coil technique in magnetic…”
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  3. 3

    Magnetic properties of ferromagnetic Heusler alloy Co2NbGa by Kanomata, T., Nishihara, H., Osaki, T., Doi, M., Sakon, T., Adachi, Y., Kihara, T., Obara, K., Shishido, T.

    “…•The stoichiometric compound Co2NbGa crystallizes in the Heusler-type structure.•Co2NbGa is ferromagnetic below the Curie temperature of 351 K.•The spontaneous…”
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  4. 4

    Effect of magnetic field on martensitic transition of Ni46Mn41In13 Heusler alloy by Oikawa, K., Ito, W., Imano, Y., Sutou, Y., Kainuma, R., Ishida, K., Okamoto, S., Kitakami, O., Kanomata, T.

    Published in Applied physics letters (20-03-2006)
    “…Magnetic and martensitic transition behaviors of a Ni46Mn41In13 Heusler alloy were investigated by differential scanning calorimetry and vibrating sample…”
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    Martensitic and magnetic transitions in Ni2+xMnGa1−x ferromagnetic shape memory alloys by Eto, T., Xu, X., Ito, T., Honda, F., Li, D.X., Oomi, G., Nakamura, F., Masumoto, H., Kainuma, R., Kanomata, T.

    Published in Journal of alloys and compounds (05-08-2021)
    “…•New phase diagram of ferromagnetic shape memory alloy Ni2+xMnGa1−x.•Characteristic composition dependence of phase transitions related to magnetism and…”
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  8. 8

    Kinetic arrest behavior in martensitic transformation of NiCoMnSn metamagnetic shape memory alloy by Umetsu, R.Y., Ito, K., Ito, W., Koyama, K., Kanomata, T., Ishida, K., Kainuma, R.

    Published in Journal of alloys and compounds (03-02-2011)
    “…▶ NiMn Z ( Z = Ga, Al, In, Sn, Sb) Heusler alloys are now very attractive because of their unique physical properties, such as, magnetic shape memory effect,…”
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    Metamagnetic shape memory effect in a Heusler-type Ni43Co7Mn39Sn11 polycrystalline alloy by Kainuma, R., Imano, Y., Ito, W., Morito, H., Sutou, Y., Oikawa, K., Fujita, A., Ishida, K., Okamoto, S., Kitakami, O., Kanomata, T.

    Published in Applied physics letters (08-05-2006)
    “…Shape memory and magnetic properties of a Ni43Co7Mn39Sn11 Heusler polycrystalline alloy were investigated by differential scanning calorimetry, the sample…”
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  11. 11

    Concentration dependence of magnetic moment in Ni50-xCoxMn50-yZy (Z=In,Sn) Heusler alloys by Ito, W., Xu, X., Umetsu, R. Y., Kanomata, T., Ishida, K., Kainuma, R.

    Published in Applied physics letters (13-12-2010)
    “…The concentration dependence of magnetic properties in the austenite phase of NiCoMnIn and NiCoMnSn Heusler alloys was systematically investigated by the…”
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  12. 12

    Atomic ordering and magnetic properties in the Ni45Co5Mn36.7In13.3 metamagnetic shape memory alloy by Ito, W., Nagasako, M., Umetsu, R. Y., Kainuma, R., Kanomata, T., Ishida, K.

    Published in Applied physics letters (08-12-2008)
    “…The effects of chemical order on the phase stability and magnetic properties of the metamagnetic shape memory alloy Ni45Co5Mn36.7In13.3 were investigated…”
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  13. 13

    Reversibility and irreversibility of magnetocaloric effect in a metamagnetic shape memory alloy under cyclic action of a magnetic field by Khovaylo, V. V., Skokov, K. P., Gutfleisch, O., Miki, H., Kainuma, R., Kanomata, T.

    Published in Applied physics letters (02-08-2010)
    “…We have studied adiabatic temperature change Δ T a d in a Ni 50 Mn 36 Co 1 Sn 13 metamagnetic shape memory alloy. An irreversible character of Δ T a d has been…”
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    The effect of Co substitution on the magnetic properties of the Heusler alloy Ni50Mn33Sn17 by Umetsu, R. Y., Sheikh, A., Ito, W., Ouladdiaf, B., Ziebeck, K. R. A., Kanomata, T., Kainuma, R.

    Published in Applied physics letters (24-01-2011)
    “…Magnetic measurements and neutron powder diffraction experiments on Ni50Mn33Sn17 and Ni45Co5Mn33Sn17 alloys were performed in order to establish the magnetic…”
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    Anomaly in entropy change between parent and martensite phases in the Ni50Mn34In16 Heusler alloy by Umetsu, R.Y., Ito, W., Ito, K., Koyama, K., Fujita, A., Oikawa, K., Kanomata, T., Kainuma, R., Ishida, K.

    Published in Scripta materialia (01-01-2009)
    “…In conclusion, magnetic changes due to martensitic transformation were investigated for a Ni50Mn34In16 alloy in various magnetic fields up to 18 T. The…”
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    Annealing temperature dependence of crystal structures and magnetic properties of Fe2CrAl and Fe2CrGa Heusler alloys by Umetsu, R.Y., Morimoto, N., Nagasako, M., Kainuma, R., Kanomata, T.

    Published in Journal of alloys and compounds (05-07-2012)
    “…► We systematically examine the annealing effects on magnetism of Fe2CrAl. ► The magnetism of Fe2CrAl is sensitive to the degree of order. ► Order–disorder…”
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    Vacancy induced structural and magnetic transition in MnCo1−xGe by Wang, Jian-Tao, Wang, Ding-Sheng, Chen, Changfeng, Nashima, O., Kanomata, T., Mizuseki, H., Kawazoe, Y.

    Published in Applied physics letters (25-12-2006)
    “…The authors report ab initio total energy calculations on the first-order structural transition of the ferromagnetic MnCo1−xGe(0.00⩽x⩽0.25) intermetallic…”
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  20. 20

    Phase diagram of Fe-substituted Ni–Mn–Sn shape memory alloys by Fukushima, K., Sano, K., Kanomata, T., Nishihara, H., Furutani, Y., Shishido, T., Ito, W., Umetsu, R.Y., Kainuma, R., Oikawa, K., Ishida, K.

    Published in Scripta materialia (01-10-2009)
    “…Magnetization and initial permeability measurements were done on the magnetic shape memory alloys Ni 2Mn 1.48- x Fe x Sn 0.52 (0 ⩽ x ⩽ 0.20). The Curie…”
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