论文标题

Magneto-seeebeck bismuth的效果

Magneto-Seebeck effect in bismuth

论文作者

Spathelf, Felix, Fauqué, Benoît, Behnia, Kamran

论文摘要

热电学在大约两个世纪前发现了热电学。该半学的较大且负面的Seebeck系数在300 K和100 K之间几乎保持平坦。可以通过考虑电子和孔迁移率的比率以及其相等的密度与温度的相等密度来理解这种引人注目的特征。另一方面,直到今天,尚未理解过鞭毛中的大型和各向异性磁性斑点效应。在这里,我们报告了一项系统的研究,该研究在二进制 - 双方平面中应用13.8 t的磁场后,从室温下降到20 k的鞭毛热电器。 Seebeck系数的幅度取决于磁场的方向,并且各向异性随温度降低而变化。在低温下,磁性观测效果变为非单调。当磁场沿二进制轴定向时,对于正和负场,塞贝克系数不相同。由于费米表面椭圆形的高对称轴既不平行,也不是晶格的高对称轴。热电器的复杂演化可以在基于半经典传输理论的模型并结合兰道量化的大部分($ t,b,θ$)的大部分($ t,b,θ$)中。散射时间使用的能量依赖性与电子声音声子散射兼容。我们发现,横向Nern的响应在设定纵向磁性效果的幅度方面起着重要作用。此外,Landau量化显着影响热电学至120 K的温度。

Thermoelectricity was discovered almost two centuries ago in bismuth. The large and negative Seebeck coefficient of this semimetal remains almost flat between 300 K and 100 K. This striking feature can be understood by considering the ratio of electron and hole mobilities and the evolution of their equal densities with temperature. The large and anisotropic magneto-Seebeck effect in bismuth, on the other hand, has not been understood up to the present day. Here, we report on a systematic study of the thermopower of bismuth from room temperature down to 20 K upon application of a magnetic field of 13.8 T in the binary-bisectrix plane. The amplitude of the Seebeck coefficient depends on the orientation of the magnetic field and the anisotropy changes sign with decreasing temperature. The magneto-Seebeck effect becomes non-monotonic at low temperatures. When the magnetic field is oriented along the binary axis, the Seebeck coefficient is not the same for positive and negative fields. This so-called Umkehr effect arises because the high symmetry axes of the Fermi surface ellipsoids are neither parallel to each other nor to the high symmetry axes of the lattice. The complex evolution of thermopower can be accounted for in a large part of the ($T,B,Θ$)-space by a model based on semiclassical transport theory and incorporating Landau quantization. The employed energy dependence of the scattering time is compatible with electron-acoustic phonon scattering. We find that the transverse Nernst response plays an important role in setting the amplitude of the longitudinal magneto-Seebeck effect. Furthermore, Landau quantization significantly affects thermoelectricity up to temperatures as high as 120 K.

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