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
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.