论文标题

候选者Weyl Semimetals WTE2中的125TE自旋晶格松弛

125Te spin-lattice relaxation in a candidate to Weyl semimetals WTe2

论文作者

Antonenko, A. O., Charnaya, E. V., Pirozerskii, A. L., Nefedov, D. Yu., Lee, M. K., Chang, L. J., Haase, J., Naumov, S. V., Domozhirova, A. N., Marchenkov, V. V.

论文摘要

建议建议二硫代尿素WTE2属于Weyl Semimetal家族。我们在WTE2单晶中研究了125TE自旋晶格松弛和NMR光谱,从28 K到室温。在Bruker Avance 500 NMR脉冲光谱仪上进行测量,以平行且垂直于磁场的两个方向。放松被证明是单个指数。松弛时间取决于磁场和频率偏移中的样品位置。随着温度低于70 K的温度,松弛速率差异大约增加,但是在较高温度下,依赖性几乎变得几乎二次。使用[41]中的理论模型用于Weyl半学,并假设随着温度的升高,假设化学势降低了化学电位的降低,则拟合了总温度范围内的弛豫率。为125TE自旋宽松弛豫证据获得的结果,有利于WTE2半学的拓扑非平地。 125TE NMR光谱同意出现非务必的柜子位点的发生,并且在温度下微不足道。

The tungsten ditelluride WTe2 was suggested to belong to the Weyl semimetal family. We studied 125Te spin-lattice relaxation and NMR spectra in a WTe2 single crystal within a large range from 28 K up to room temperature. Measurements were carried out on a Bruker Avance 500 NMR pulse spectrometer for two orientations of the crystalline c axis, parallel and perpendicular to magnetic field. Relaxation proved to be single-exponential. The relaxation time varied depending on the sample position in magnetic field and frequency offset. The relaxation rate increased about linearly with temperature below 70 K however the dependence became nearly quadratic at higher temperatures. The relaxation rate within the total temperature range was fitted using a theoretical model developed in [41] for Weyl semimetals and assuming the decrease of the chemical potential with increasing temperature. The results obtained for 125Te spin-lattice relaxation evidence in favor of the topological nontriviality of the WTe2 semimetal. The 125Te NMR spectra agreed with the occurrence of nonequivalent tellurium sites and varied insignificantly with temperature.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源