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弹道式碲化铅纳米线器件

Ballistic PbTe Nanowire Devices.

作者信息

Wang Yuhao, Chen Fangting, Song Wenyu, Geng Zuhan, Yu Zehao, Yang Lining, Gao Yichun, Li Ruidong, Yang Shuai, Miao Wentao, Xu Wei, Wang Zhaoyu, Xia Zezhou, Song Hua-Ding, Feng Xiao, Wang Tiantian, Zang Yunyi, Li Lin, Shang Runan, Xue Qikun, He Ke, Zhang Hao

机构信息

State Key Laboratory of Low Dimensional Quantum Physics, Department of Physics, Tsinghua University, Beijing 100084, China.

Beijing Academy of Quantum Information Sciences, Beijing 100193, China.

出版信息

Nano Lett. 2023 Dec 13;23(23):11137-11144. doi: 10.1021/acs.nanolett.3c03604. Epub 2023 Nov 10.

Abstract

Disorder is the primary obstacle in the current Majorana nanowire experiments. Reducing disorder or achieving ballistic transport is thus of paramount importance. In clean and ballistic nanowire devices, quantized conductance is expected, with plateau quality serving as a benchmark for disorder assessment. Here, we introduce ballistic PbTe nanowire devices grown by using the selective-area-growth (SAG) technique. Quantized conductance plateaus in units of 2/ are observed at zero magnetic field. This observation represents an advancement in diminishing disorder within SAG nanowires as most of the previously studied SAG nanowires (InSb or InAs) have not exhibited zero-field ballistic transport. Notably, the plateau values indicate that the ubiquitous valley degeneracy in PbTe is lifted in nanowire devices. This degeneracy lifting addresses an additional concern in the pursuit of Majorana realization. Moreover, these ballistic PbTe nanowires may enable the search for clean signatures of the spin-orbit helical gap in future devices.

摘要

无序是当前马约拉纳纳米线实验中的主要障碍。因此,减少无序或实现弹道输运至关重要。在清洁且具有弹道特性的纳米线器件中,预计会出现量子化电导,平台质量可作为无序评估的基准。在此,我们介绍通过选择性区域生长(SAG)技术生长的弹道式PbTe纳米线器件。在零磁场下观察到以2/e为单位的量子化电导平台。这一观察结果代表了在减少SAG纳米线无序方面的进展,因为之前研究的大多数SAG纳米线(InSb或InAs)并未表现出零场弹道输运。值得注意的是,平台值表明PbTe中普遍存在的谷简并在纳米线器件中被消除。这种简并消除解决了在追求马约拉纳实现过程中的另一个问题。此外,这些弹道式PbTe纳米线可能有助于在未来器件中寻找自旋轨道螺旋间隙的清晰特征。

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