1 citations · 2 across the 2 of their papers we have counts for
5 papers
Electronic conductivity in anharmonic crystals: Phonon dephasing in the electron-phonon interaction
Mingran Kong, Bartomeu Monserrat
The electron-phonon interaction underpins many material properties, for example, the conductivity of metals and the optoelectronic response of semiconductors. First-principles calc…
Anharmonic dephasing in the electron-phonon interaction
Mingran Kong, Bartomeu Monserrat
Electron-phonon coupling has been a central topic in condensed matter physics for decades, and firstprinciples methods have demonstrated remarkable success in quantitatively captur…
High-throughput superconducting predictions through density of states rescaling
Kieran Bozier, Kang Wang, Bartomeu Monserrat +1
First principles computational methods can predict the superconducting critical temperature of conventional superconductors through the electron-phonon spectral fu…
Universal Optical Conductivity from Quantum Geometry in Quadratic Band-Touching Semimetals
Chang-geun Oh, Sun-Woo Kim, Kun Woo Kim +2
Exploring the quantum geometric properties of solids beyond their topological aspects has become a key focus in current solid-state physics research. We derive the geometric formul…
Upper bounds on the highest phonon frequency and superconducting temperature from fundamental physical constants
K. Trachenko, B. Monserrat, M. Hutcheon +1
Fundamental physical constants govern key effects in high-energy particle physics and astrophysics, including the stability of particles, nuclear reactions, formation and evolution…