Please use this identifier to cite or link to this item: https://hdl.handle.net/10356/137998
Title: Nonsaturating large magnetoresistance in semimetals
Authors: Leahy, Ian A.
Lin, Yu-Ping
Siegfried, Peter E.
Treglia, Andrew C.
Song, Justin Chien Wen
Nandkishore, Rahul M.
Lee, Minhyea
Keywords: Science::Physics
Issue Date: 2018
Source: Leahy, I. A., Lin, Y.-P., Siegfried, P. E., Treglia, A. C., Song, J. C. W., Nandkishore, R. M., & Lee, M. (2018). Nonsaturating large magnetoresistance in semimeta. Proceedings of the National Academy of Sciences of the United States of America, 115 (42), 10570-10575. doi:10.1073/pnas.1808747115
Journal: Proceedings of the National Academy of Sciences of the United States of America
Abstract: The rapidly expanding class of quantum materials known as topological semimetals (TSMs) displays unique transport properties, including a striking dependence of resistivity on applied magnetic field, that are of great interest for both scientific and technological reasons. So far, many possible sources of extraordinarily large nonsaturating magnetoresistance have been proposed. However, experimental signatures that can identify or discern the dominant mechanism and connect to available theories are scarce. Here we present the magnetic susceptibility (χ), the tangent of the Hall angle ([Formula: see text]), along with magnetoresistance in four different nonmagnetic semimetals with high mobilities, NbP, TaP, NbSb2, and TaSb2, all of which exhibit nonsaturating large magnetoresistance (MR). We find that the distinctly different temperature dependences, [Formula: see text], and the values of [Formula: see text] in phosphides and antimonates serve as empirical criteria to sort the MR from different origins: NbP and TaP are uncompensated semimetals with linear dispersion, in which the nonsaturating magnetoresistance arises due to guiding center motion, while NbSb2 and TaSb2 are compensated semimetals, with a magnetoresistance emerging from nearly perfect charge compensation of two quadratic bands. Our results illustrate how a combination of magnetotransport and susceptibility measurements may be used to categorize the increasingly ubiquitous nonsaturating large magnetoresistance in TSMs.
URI: https://hdl.handle.net/10356/137998
ISSN: 0027-8424
DOI: 10.1073/pnas.1808747115
Schools: School of Physical and Mathematical Sciences 
Rights: © 2018 The Author(s). All rights reserved. This paper was published by National Academy of Sciences in Proceedings of the National Academy of Sciences of the United States of America and is made available with permission of The Author(s).
Fulltext Permission: open
Fulltext Availability: With Fulltext
Appears in Collections:SPMS Journal Articles

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