Measuring, Interpreting and Translating Electron Quasiparticle - Phonon Interactions on the Surfaces of the Topological Insulators Bismuth Selenide and Bismuth Telluride Measuring, Interpreting and Translating Electron Quasiparticle - Phonon Interactions on the Surfaces of the Topological Insulators Bismuth Selenide and Bismuth Telluride

Measuring, Interpreting and Translating Electron Quasiparticle - Phonon Interactions on the Surfaces of the Topological Insulators Bismuth Selenide and Bismuth Telluride

    • 87,99 €
    • 87,99 €

Publisher Description

The thesis presents experimental and theoretical results about the surface dynamics and the surface Dirac fermion (DF) spectral function of the strong topological insulators Bi2Te3 and Bi2Se3. The experimental results reveal the presence of a strong Kohn anomaly in the measured surface phonon dispersion of a low-lying optical mode, and the absence of surface Rayleigh acoustic phonons. Fitting the experimental data to theoretical models employing phonon Matsubara functions allowed the extraction of the matrix elements of the coupling Hamiltonian and the modifications to the surface phonon propagator that are encoded in the phonon self-energy. This allowed, for the first time, calculation of phonon mode-specific DF coupling λν(q) from experimental data, with average coupling significantly higher than typical values for metals, underscoring the strong coupling between optical surface phonons and surface DFs in topological insulators. Finally, to connect to experimental results obtained from photoemission spectroscopies, an electronic (DF) Matsubara function was constructed using the determined electron-phonon matrix elements and the optical phonon dispersion. This allowed calculation of the DF spectral function and density of states, allowing for comparison with photoemission and scanning tunneling spectroscopies. The results set the necessary energy resolution and extraction methodology for calculating λ from the DF perspective.

GENRE
Science & Nature
RELEASED
2016
14 October
LANGUAGE
EN
English
LENGTH
103
Pages
PUBLISHER
Springer International Publishing
PROVIDER INFO
Springer Science & Business Media LLC
SIZE
2.6
MB
Physics on Ultracold Quantum Gases Physics on Ultracold Quantum Gases
2018
Multiple Scattering Theory for Spectroscopies Multiple Scattering Theory for Spectroscopies
2018
Quantum Collisions and Confinement of Atomic and Molecular Species, and Photons Quantum Collisions and Confinement of Atomic and Molecular Species, and Photons
2019
Enhanced Optical and Electric Manipulation of a Quantum Gas of KRb Molecules Enhanced Optical and Electric Manipulation of a Quantum Gas of KRb Molecules
2018
Recent Progress in Few-Body Physics Recent Progress in Few-Body Physics
2020
Annual Review Of Cold Atoms And Molecules - Volume 3 Annual Review Of Cold Atoms And Molecules - Volume 3
2015
Essential Guides for Early Career Teachers: Professional Behaviours Essential Guides for Early Career Teachers: Professional Behaviours
2025
Your Primary School-based Experience Your Primary School-based Experience
2025
Practical Ideas for Teaching Primary Science Practical Ideas for Teaching Primary Science
2025
Essential Guides for Early Career Teachers: Teaching Early Years Essential Guides for Early Career Teachers: Teaching Early Years
2025
Surviving and Thriving as a Primary NQT Surviving and Thriving as a Primary NQT
2025
Key Concepts in Primary Science Key Concepts in Primary Science
2025