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Neutron diffraction and electrical transport studies on magnetic ordering in terbium at high pressures and low temperatures

机译:高压和低温下on的磁有序性的中子衍射和电输运研究

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摘要

Neutron diffraction and electrical transport measurements have been carried out on the heavy rare-earth metal terbium at high pressures and low temperatures in order to elucidate the onset of ferromagnetic (FM) order as a function of pressure. The electrical resistance measurements show a change in slope as the temperature is lowered through the FM Curie temperature. The temperature of this FM transition decreases at a rate of -16.7 K/GPa up to a pressure of 3.6 GPa, at which point the onset of FM order is suppressed. The neutron diffraction measurements as a function of pressure at temperatures ranging from 90 to 290 K confirm that the change of slope in the resistance is associated with the FM ordering, since this occurs at pressures similar to those determined from the resistance results at these temperatures. A disappearance of FM ordering was observed as the pressure is increased above 3.6 GPa and is correlated with the phase transition from the ambient hexagonal close packed structure to an α-Sm-type structure at high pressures.
机译:为了在高压和低温下对重稀土金属ter进行中子衍射和电迁移测量,以阐明铁磁(FM)有序随压力的变化。电阻测量结果显示,随着温度通过FM居里温度降低,斜率会发生变化。 FM转变的温度以-16.7 K / GPa的速率下降,直到压力达到3.6 GPa,此时FM阶数的产生受到抑制。在90到290 K的温度范围内,中子衍射测量值随压力的变化证实电阻的斜率变化与FM有序有关,因为这发生在与根据这些温度下的电阻结果确定的压力相似的压力下。当压力增加到3.6 GPa以上时,观察到FM有序消失,并且与高压下从周围六方密堆积结构到α-Sm型结构的相变相关。

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