论文标题

通过调节pyrochlore氧化物CD2RE2O7中的各向异性应力来控制域

Domain Control by Adjusting Anisotropic Stress in Pyrochlore Oxide Cd2Re2O7

论文作者

Tajima, Satoshi, Hirai, Daigorou, Kinoshita, Yuto, Tokunaga, Masashi, Akiba, Kazuto, Kobayashi, Tatsuo C., Hirose, Hishiro T., Hiroi, Zenji

论文摘要

5D pyrochlore氧化物CD2RE2O7表现出从立方的pyrochlore结构(I阶段)到〜200 K(II阶段)的TS1以下的四方结构的连续相变,再到另一个非中心对称四方结构,低于〜120 K(阶段III)。两个低温阶段的特征是由旋转轨道耦合金属的费米液体不稳定性引起的奇数多极阶。为了控制通过过渡产生的四方结构域并获得用于测量各向异性特性的单域晶体,我们制备了具有(0 0 1)表面的单晶,并沿平面施加了双轴和单轴应力。偏振光学显微镜观察结果表明,在低温下以可逆的方式诱导小应变约0.05%的小应变可以以可逆性的方式翻转双域,这证明了四方变形在C> A之间的四方变形切换为II和C <a相c <a。使用单轴应力下的单域晶体测量的电阻率测量表明,各向异性在TS2左右最大,并且沿TS2横穿C轴的电阻率大于沿A轴的电阻率在TS2左右的II(III)大约25%(较小)。这些大型各向异性可能起源于CD2RE2O7的簇电动环形四极相位的自旋分裂的Fermi表面中的自旋依赖性散射。

The 5d pyrochlore oxide Cd2Re2O7 exhibits successive phase transitions from a cubic pyrochlore structure (phase I) to a tetragonal structure without inversion symmetry below Ts1 of ~200 K (phase II) and further to another noncentrosymmetric tetragonal structure below Ts2 of ~120 K (phase III). The two low-temperature phases may be characterized by odd-parity multipolar orders induced by the Fermi liquid instability of the spin-orbit-coupled metal. To control the tetragonal domains generated by the transitions and to obtain a single-domain crystal for the measurements of anisotropic properties, we prepared single crystals with the (0 0 1) surface and applied biaxial and uniaxial stresses along the plane. Polarizing optical microscopy observations revealed that inducing a small strain of approximately 0.05% could flip the twin domains ferroelastically in a reversible fashion at low temperatures, which evidences that the tetragonal deformation switches at Ts2 between c > a for phase II and c < a for phase III. Resistivity measurements using single-domain crystals under uniaxial stress showed that the anisotropy was maximum at around Ts2 and turned over across Ts2: resistivity along the c axis is larger (smaller) than that along the a axis by ~25% for phase II (III) at around Ts2. These large anisotropies probably originate from spin-dependent scattering in the spin-split Fermi surfaces of the cluster electric toroidal quadrupolar phases of Cd2Re2O7.

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