Department of Physics, University of Alabama at Birmingham, Birmingham, AL 35294, USA.
J Phys Condens Matter. 2010 May 12;22(18):185702. doi: 10.1088/0953-8984/22/18/185702. Epub 2010 Apr 15.
We have investigated structural and magnetic phase transitions under high pressures in a quaternary rare-earth transition-metal arsenide oxide NdCoAsO compound that is isostructural to the high temperature superconductor parent phase NdFeAsO. The four-probe electrical resistance measurements carried out in a designer diamond anvil cell show that the ferromagnetic Curie temperature and antiferromagnetic Néel temperature increase with an increase in pressure. High pressure x-ray diffraction studies using a synchrotron source show a structural phase transition from a tetragonal phase to a new crystallographic phase at a pressure of 23 GPa at 300 K. The NdCoAsO sample remained antiferromagnetic and non-superconducting down to 10 K and up to the highest pressure achieved in this experiment, 53 GPa. A P-T phase diagram for NdCoAsO is presented from ambient conditions to P = 53 GPa and T = 10 K.
我们研究了高压下的结构和磁相变在一个四元稀土过渡金属砷氧化物 NdCoAsO 化合物,它与高温超导母体 NdFeAsO 同构。在一个设计的金刚石砧细胞中进行的四探针电阻测量表明,铁磁共振居里温度和反铁磁共振奈尔温度随压力的增加而增加。利用同步辐射源进行的高压 X 射线衍射研究表明,在 300 K 时,在 23 GPa 的压力下,从四方相转变为新的晶体相。NdCoAsO 样品在 10 K 及更高压力下仍保持反铁磁和非超导状态,实验中达到的最高压力为 53 GPa。从环境条件到 P = 53 GPa 和 T = 10 K,给出了 NdCoAsO 的 P-T 相图。