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Journal Articles

Magnetic properties and crystalline electric field scheme in RRhIn$$_5$$ (R: Rare earth)

Hieu, N. V.*; Takeuchi, Tetsuya*; Shishido, Hiroaki*; Tonohiro, Chie*; Yamada, Tsutomu*; Nakashima, Hiroshi*; Sugiyama, Kiyohiro*; Settai, Rikio*; Matsuda, Tatsuma; Haga, Yoshinori; et al.

Journal of the Physical Society of Japan, 76(6), p.064702_1 - 064702_16, 2007/06

 Times Cited Count:49 Percentile:84.45(Physics, Multidisciplinary)

Journal Articles

Fermi surface and magnetic properties of PrTIn$$_5$$ (T: Co, Rh, and Ir)

Hieu, N. V.*; Shishido, Hiroaki*; Thamizhavel, A.*; Settai, Rikio*; Araki, Shingo*; Nozue, Yasuo*; Matsuda, Tatsuma; Haga, Yoshinori; Takeuchi, Tetsuya*; Harima, Hisatomo*; et al.

Journal of the Physical Society of Japan, 74(12), p.3320 - 3328, 2005/12

 Times Cited Count:13 Percentile:59.21(Physics, Multidisciplinary)

We grew single crystals of PrCoIn$$_5$$, PrRhIn$$_5$$, and PrIrIn$$_5$$ with the tetragonal crystal structure and measured the electrical resistivity, specific heat, magnetic susceptibility, magnetization and de Haas-van Alphen effect. These Pr compounds reveal no magnetic ordering. The topology of the Fermi surfaces is the same as that of a non-4 f reference compound LaRhIn$$_5$$. The cyclotron mass and/or the electronic specific heat coefficient are also approximately the same as those of LaRhIn$$_5$$. The magnetic susceptibility and magnetization are anisotropic, reflecting the crystal structure, which are well explained by the tetragonal crystalline electric field scheme with the singlet ground state.

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