Search Results - "MOURI, Takuya"

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  1. 1

    Competition of Magnetic and Quadrupolar Order Parameters in HoB4 by OKUYAMA, Daisuke, MATSUMURA, Takeshi, MOURI, Takuya, ISHIKAWA, Naoko, OHOYAMA, Kenji, HIRAKA, Haruhiro, NAKAO, Hironori, IWASA, Kazuaki, MURAKAMI, Youichi

    Published in Journal of the Physical Society of Japan (01-04-2008)
    “…The successive magnetic phase transitions of HoB4 with TN1=7.1 K and TN2=5.7 K have been investigated in detail by neutron and X-ray diffraction. Since Ho ions…”
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    Journal Article
  2. 2

    Successive Magnetic Phase Transitions of Component Orderings in DyB4 by Matsumura, Takeshi, Okuyama, Daisuke, Mouri, Takuya, Murakami, Youichi

    Published in Journal of the Physical Society of Japan (01-07-2011)
    “…The successive magnetic phase transitions in DyB 4 have been studied in detail by microscopic measurements using resonant X-ray diffraction and neutron…”
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    Journal Article
  3. 3
  4. 4

    Successive Magnetic Phase Transitions of Component Orderings in DyB^sub 4 by Matsumura, Takeshi, Okuyama, Daisuke, Mouri, Takuya, Murakami, Youichi

    Published in Journal of the Physical Society of Japan (01-07-2011)
    “…The successive magnetic phase transitions in DyB4 have been studied in detail by microscopic measurements using resonant X-ray diffraction and neutron…”
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    Journal Article
  5. 5

    Successive Magnetic Phase Transitions of Component Orderings in DyB sub( 4) by Matsumura, Takeshi, Okuyama, Daisuke, Mouri, Takuya, Murakami, Youichi

    Published in Journal of the Physical Society of Japan (01-07-2011)
    “…The successive magnetic phase transitions in DyB4 have been studied in detail by microscopic measurements using resonant X-ray diffraction and neutron…”
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    Journal Article
  6. 6
  7. 7

    Time evolution and decoherence of entangled states realized in coupled superconducting flux qubits by Mouri, Takuya, Nakano, Hayato, Takayanagi, Hideaki

    Published 25-01-2005
    “…We study theoretically how decoherence affects superposition states composed of entangled states in inductively coupled two superconducting flux-qubits. We…”
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    Journal Article