Bulletin of the American Physical Society
APS March Meeting 2020
Volume 65, Number 1
Monday–Friday, March 2–6, 2020; Denver, Colorado
Session C71: Poster Session I (2:00pm - 5:00pm)
2:00 PM,
Monday, March 2, 2020
Room: Exhibit Hall C/D
Abstract: C71.00282 : Normal mode analysis of a relaxation process with Bayesian inference
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Abstract
Presenter:
Itsushi Sakata
(Univ of Tokyo)
Authors:
Itsushi Sakata
(Univ of Tokyo)
Yoshino Nagano
(Univ of Tokyo)
Yasuhiko Igarashi
(Univ of Tokyo)
Shin Murata
(Univ of Tokyo)
Kohji Mizoguchi
(Osaka Prefecture University)
Ichiro Akai
(Kumamoto University)
Masato Okada
(Univ of Tokyo)
For the analysis, the extraction of modes that are specific to the phenomenon of interest is unavoidable.
In this study, to construct a data-driven technique for relaxation processes, we propose a framework to systematically extract normal modes from the viewpoint of model selection with Bayesian inference.
Our approach consists of a well-known method called sparsity-promoting dynamic mode decomposition, which decomposes a mixture of damped oscillations, and the Bayesian model selection framework.
We numerically verify the performance of our proposed method by using coherent phonon signals of a bismuth crystal and virtual data as typical examples of relaxation processes.
Our method succeeds in extracting the normal modes even from experimental data with significant trends.
Moreover, the selected set of modes is robust to observation noise, and our method can estimate the level of observation noise.
From these observations, our method is applicable to normal mode analysis, especially for data with significant trends, which broadens the applicability of the data-driven approach in analyzing relaxation phenomena in material science.
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