Mitsuda Akihiro, Manabe Shigeki, Umeda Masafumi, Wada Hirofumi, Matsubayashi Kazuyuki, Uwatoko Yoshiya, Mizumaki Masaichiro, Kawamura Naomi, Nitta Kiyofumi, Hirao Naohisa, Ohishi Yasuo, Ishimatsu Naoki
Department of Physics, Kyushu University, 744 Motooka, Nishi-ku, Fukuoka 819-0395, Japan.
J Phys Condens Matter. 2018 Mar 14;30(10):105603. doi: 10.1088/1361-648X/aaaca3.
The layered hexagonal EuPtP is a rare substance that exhibits two successive valence transitions occurring simultaneously with valence ordering transitions and an antiferromagnetic order. Anticipating that the application of pressure to this sample would induce a new valence-ordered structure and/or a new phenomenon associated with valence fluctuation, we examined the electrical resistivity ρ, the Eu L-edge x-ray absorption spectroscopy, and the powder x-ray diffraction under high pressure. We found a new valence transition at around P = 2.5 GPa. After the transition, a new valence-ordered structure is realized at the lowest temperature. The valence-ordered structure is inferred to be stacking of [Formula: see text] (2+: Eu layer, 3+: Eu layer) along the c-axis. Upon further increases in pressure, the valence-ordered structure is suppressed and another valance-ordered phase is realized up to P = 6 GPa. The antiferromagnetic order collapses in the pressure range between 6 GPa and 8 GPa.
层状六方 EuPtP 是一种稀有物质,它表现出两个连续的价态转变,这些转变与价态有序转变和反铁磁序同时发生。预计对该样品施加压力会诱导出新的价态有序结构和/或与价态波动相关的新现象,我们研究了高压下的电阻率 ρ、Eu L 边 X 射线吸收光谱以及粉末 X 射线衍射。我们在约 P = 2.5 GPa 处发现了一个新的价态转变。转变后,在最低温度下实现了一种新的价态有序结构。推测该价态有序结构是 [化学式:见原文](2 +:Eu 层,3 +:Eu 层)沿 c 轴的堆叠。随着压力进一步增加,价态有序结构受到抑制,直至 P = 6 GPa 时又实现了另一个价态有序相。反铁磁序在 6 GPa 至 8 GPa 的压力范围内消失。