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Imaging currents in HgTe quantum wells in the quantum spin Hall regime

Cornell Affiliated Author(s)

Author

K.C. Nowack
E.M. Spanton
M. Baenninger
M. König
J.R. Kirtley
B. Kalisky
C. Ames
P. Leubner
C. Brüne
H. Buhmann
L.W. Molenkamp
D. Goldhaber-Gordon
K.A. Moler

Abstract

The quantum spin Hall (QSH) state is a state of matter characterized by a non-trivial topology of its band structure, and associated conducting edge channels. The QSH state was predicted and experimentally demonstrated to be realized in HgTe quantum wells. The existence of the edge channels has been inferred from local and non-local transport measurements in sufficiently small devices. Here we directly confirm the existence of the edge channels by imaging the magnetic fields produced by current flowing in large Hall bars made from HgTe quantum wells. These images distinguish between current that passes through each edge and the bulk. On tuning the bulk conductivity by gating or raising the temperature, we observe a regime in which the edge channels clearly coexist with the conducting bulk, providing input to the question of how ballistic transport may be limited in the edge channels. Our results represent a versatile method for characterization of new QSH materials systems. © 2013 Macmillan Publishers Limited. All rights reserved.

Date Published

Journal

Nature Materials

Volume

12

Issue

9

Number of Pages

787-791,

URL

https://www.scopus.com/inward/record.uri?eid=2-s2.0-84883201786&doi=10.1038%2fnmat3682&partnerID=40&md5=ae3698c5146f54de2944830380034c78

DOI

10.1038/nmat3682

Group (Lab)

Katja Nowack Group

Funding Source

0830228
N66001-11-1-4105
267436
DE-AC02-76SF00515
3-TOP

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