Bulletin of the American Physical Society
APS March Meeting 2018
Volume 63, Number 1
Monday–Friday, March 5–9, 2018; Los Angeles, California
Session V14: Topological Materials - Spectroscopy
2:30 PM–5:30 PM,
Thursday, March 8, 2018
LACC
Room: 304B
Sponsoring
Unit:
DMP
Chair: Yulin Chen, University of Oxford
Abstract ID: BAPS.2018.MAR.V14.8
Abstract: V14.00008 : Phonon-Mediated Excited State Decay in High Energy Unoccupied Bands of the Topological Insulator Bi1.5Sb0.5Te1.7 Se1.3
4:42 PM–4:54 PM
Presenter:
Daniel Nevola
(North Carolina State Univ)
Authors:
Daniel Nevola
(North Carolina State Univ)
Omadillo Abdurazakov
(North Carolina State Univ)
Jonathan Boltersdorf
(North Carolina State Univ)
Alexander Bataller
(North Carolina State Univ)
Kenan Gundogdu
(North Carolina State Univ)
Paul Maggard
(North Carolina State Univ)
Alexander Kemper
(North Carolina State Univ)
Daniel Dougherty
(North Carolina State Univ)
Excited state electron populations in topological insulator materials provide a fertile proving ground for understanding non-equilibrium dynamics in solids. These populations can be prepared far from thermal equilibrium in the solid and decay by interactions with thermalized populations of electrons, phonons, etc. Using time and angle resolved photoemission spectroscopy (trARPES), we monitor the excited state decay in the topological insulator Bi1.5Sb0.5Te1.7Se1.3 at high energies much greater than those of the dominant phonon modes. We consider the decay rates throughout both the bulk conduction band and the topological surface state and find that they increase linearly with energy. We explain the observed rate as a function of energy as reflecting the shape of the electronic density of states by considering an electron-phonon scattering model that was previously applied only to low energy rate behavior. This shows that emission of low energy phonons can be a dominant mechanism of decay of highly excited electron populations.
To cite this abstract, use the following reference: http://meetings.aps.org/link/BAPS.2018.MAR.V14.8
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