Bulletin of the American Physical Society
APS March Meeting 2022
Volume 67, Number 3
Monday–Friday, March 14–18, 2022; Chicago
Session F46: Real Space Methods for the Electronic Structure Problem
8:00 AM–11:00 AM,
Tuesday, March 15, 2022
Room: McCormick Place W-470A
Sponsoring
Unit:
DCOMP
Chair: Mehmet Dogan, University of California, Berkeley
Abstract: F46.00007 : Magnons from real-space real-time time-dependent density functional theory
10:00 AM–10:36 AM
Presenter:
Nicolas Tancogne-Dejean
(Max Planck Institute for the Structure &)
Author:
Nicolas Tancogne-Dejean
(Max Planck Institute for the Structure &)
To investigate magnons, we drive the system out of equilibrium using an ultrashort magnetic kick perpendicular to the ground-state magnetization of the material. The dynamical properties of the system are obtained by propagating the time-dependent Kohn-Sham equations in real time, and the analysis of the time-dependent magnetization reveals the transverse magnetic excitation spectrum of the magnet.
In the limit of weak magnetic kicks, we recover the results obtained using the linear-response formulation of time-dependent density functional theory.
Interestingly, our approach does not rely on the assumptions of small perturbations and can be used to investigate nonlinear phenomena induced by a strong magnetic field as well as out-of-equilibrium situations where the system is kicked from an excited state. In this talk, we will present results for nonlinear magnetic excitations from first principles in iron and nickel oxide.
Using the real-space method, we benefit from a favorable scaling for large systems, such as supercells needed for describing small momenta. Moreover, using the flexibility of choosing boundary conditions that are employed, we also implemented a method using "twisted boundary conditions" employing the generalized Bloch theorem, allowing for studying magnons employing only primitive cells instead of supercells.
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