论文标题

(001)snte/pbte杂函数中拓扑载体的量子运输和迁移率

Quantum transport and mobility spectrum of topological carriers in (001) SnTe/PbTe heterojunctions

论文作者

Śnieżek, D., Wróbel, Jarosław, Kojdecki, M., Śliwa, C., Schreyeck, S., Brunner, K., Molenkamp, L. W., Karczewski, G., Wróbel, Jerzy

论文摘要

通过MBE技术在(001)未凝聚的CDTE底物上生长的SNTE/PBTE异质结构中的磁转运测量。在低磁场上,观察到电导率的量子校正可能归因于接线界面处拓扑状态。对于具有5 nm厚的SNTE层的样品,数据分析表明MIDGAP状态实际上是损失的。但是,假设存在无间隙狄拉克锥,则完全解释了10 nm和20 nm SNTE/PBTE样品中的相干性效应。移动频谱分析(MSA)的框架中描述了高磁场处的磁转运。我们证明,对于所有SNTE/PBTE异质结,同时观察到的电子和孔状峰可能源于拓扑状态的凹形和凸的凹形部分,而不是来自载有负和正电荷的Quasiparticles的存在。这种解释是通过在经典模型中执行的,并基于Boltzmann传输方程的解决方案来支持的,该解释是由Gapless(100)Dirac锥的电导率张量分量的数值计算支持。我们的方法表明,MSA应用于拓扑问题的磁转运测量值的可行性。

Measurements of magnetotransport in SnTe/PbTe heterojunctions grown by the MBE technique on (001) undoped CdTe substrates were performed. At low magnetic fields, quantum corrections to conductivity were observed that may be attributed to the presence of topological states at the junction interface. For a sample with 5 nm thick SnTe layer, the data analysis suggests that midgap states are actually gapped. However, the phase coherence effects in 10 nm and 20 nm SnTe/PbTe samples are fully explained assuming existence of gapless Dirac cones. Magnetotransport at higher magnetic fields is described in the framework of mobility spectrum analysis (MSA). We demonstrate that the electron- and hole-like peaks observed simultaneously for all SnTe/PbTe heterojunctions may originate from the concave and convex parts of the energy isosurface for topological states -- and not from the existence of quasiparticles both carrying negative and positive charges. This interpretation is supported by numerical calculations of conductivity tensor components for gapless (100) Dirac cones, performed within a classical model and based on the solutions of Boltzmann transport equation. Our approach shows the feasibility of MSA in application to magnetotransport measurements on topological matter.

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