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Resonant electron tunneling spectroscopy of antibonding states in a Dirac semimetal

Resonant electron tunneling spectroscopy of antibonding states in a Dirac semimetal


Title: Resonant electron tunneling spectroscopy of antibonding states in a Dirac semimetal
Author: Marques, Y.
Yudin, D.
Shelykh, Ivan   orcid.org/0000-0001-5393-821X
Seridonio, A. C.
Date: 2018-06-12
Language: English
Scope: 235121
University/Institute: Háskóli Íslands
University of Iceland
School: Verkfræði- og náttúruvísindasvið (HÍ)
School of Engineering and Natural Sciences (UI)
Department: Raunvísindastofnun (HÍ)
Science Institute (UI)
Series: Physical Review B;97(23)
ISSN: 2469-9950
2469-9969 (eISSN)
DOI: 10.1103/PhysRevB.97.235121
Subject: Local density of states; Phonons; Topological materials; Dirac semimetal; Condensed Matter & Materials Physics; Hljóðeindir; Grannfræði; Málmungar; Þéttefnisfræði
URI: https://hdl.handle.net/20.500.11815/1052

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Citation:

Marques, Y., Yudin, D., Shelykh, I. A., & Seridonio, A. C. (2018). Resonant electron tunneling spectroscopy of antibonding states in a Dirac semimetal. Physical Review B, 97(23), 235121. doi:10.1103/PhysRevB.97.23512

Abstract:

Recently, it was shown both theoretically and experimentally that certain three-dimensional (3D) materials have Dirac points in the Brillouin zone, thus being 3D analogs of graphene. Moreover, it was suggested that under specific conditions a pair of localized impurities placed inside a three-dimensional Dirac semimetal may lead to the formation of an unusual antibonding state. In the meantime, the effect of vibrational degrees of freedom which are present in any realistic system has avoided attention. In this work, we address the influence of phonons on characteristic features of (anti)bonding state, and discuss how these results can be tested experimentally via local probing, namely, inelastic electron tunneling spectroscopy curve obtained in STM measurements.

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