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Fermionic response from fractionalization in an insulating two-dimensional magnet
File | Description | Size | Format | |
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1602.05277v1.pdf | Accepted version | 2.11 MB | Adobe PDF | View/Open |
Title: | Fermionic response from fractionalization in an insulating two-dimensional magnet |
Authors: | Nasu, J Knolle, J Kovrizhin, DL Motome, Y Moessner, R |
Item Type: | Journal Article |
Abstract: | Conventionally ordered magnets possess bosonic elementary excitations, called magnons. By contrast, no magnetic insulators in more than one dimension are known whose excitations are not bosons but fermions. Theoretically, some quantum spin liquids (QSLs)1—new topological phases that can occur when quantum fluctuations preclude an ordered state—are known to exhibit Majorana fermions2 as quasiparticles arising from fractionalization of spins3. Alas, despite much searching, their experimental observation remains elusive. Here, we show that fermionic excitations are remarkably directly evident in experimental Raman scattering data4 across a broad energy and temperature range in the two-dimensional material α-RuCl3. This shows the importance of magnetic materials as hosts of Majorana fermions. In turn, this first systematic evaluation of the dynamics of a QSL at finite temperature emphasizes the role of excited states for detecting such exotic properties associated with otherwise hard-to-identify topological QSLs. |
Issue Date: | 4-Jul-2016 |
Date of Acceptance: | 19-May-2016 |
URI: | http://hdl.handle.net/10044/1/54775 |
DOI: | https://dx.doi.org/10.1038/NPHYS3809 |
ISSN: | 1745-2473 |
Publisher: | Nature Publishing Group |
Start Page: | 912 |
End Page: | 915 |
Journal / Book Title: | Nature Physics |
Volume: | 12 |
Issue: | 10 |
Copyright Statement: | Copyright © 2016, Rights Managed by Nature Publishing Group |
Keywords: | Science & Technology Physical Sciences Physics, Multidisciplinary Physics MODEL cond-mat.str-el cond-mat.mtrl-sci 01 Mathematical Sciences 02 Physical Sciences Fluids & Plasmas |
Publication Status: | Published |
Appears in Collections: | Condensed Matter Theory Physics Faculty of Natural Sciences |