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Simulating terahertz field-induced ferroelectricity in quantum paraelectric SrTiO3

Authors :
European Commission
European Research Council
Japan Science and Technology Agency
German Research Foundation
Japan Society for the Promotion of Science
Swedish Research Council
Alexander von Humboldt Foundation
Simons Foundation
Flatiron Institute
Max Planck Society
Shin, Dongbin
Latini, Simone
Schäfer, Christian
Sato, Shunsuke A.
Baldini, Edoardo
Giovannini, Umberto de
Hübener, Hannes
Rubio, Angel
European Commission
European Research Council
Japan Science and Technology Agency
German Research Foundation
Japan Society for the Promotion of Science
Swedish Research Council
Alexander von Humboldt Foundation
Simons Foundation
Flatiron Institute
Max Planck Society
Shin, Dongbin
Latini, Simone
Schäfer, Christian
Sato, Shunsuke A.
Baldini, Edoardo
Giovannini, Umberto de
Hübener, Hannes
Rubio, Angel
Publication Year :
2022

Abstract

Recent experiments have demonstrated that light can induce a transition from the quantum paraelectric to the ferroelectric phase of SrTiO3. Here, we investigate this terahertz field-induced ferroelectric phase transition by solving the time-dependent lattice Schrödinger equation based on first-principles calculations. We find that ferroelectricity originates from a light-induced mixing between ground and first excited lattice states in the quantum paraelectric phase. In agreement with the experimental findings, our study shows that the nonoscillatory second harmonic generation signal can be evidence of ferroelectricity in SrTiO3. We reveal the microscopic details of this exotic phase transition and highlight that this phenomenon is a unique behavior of the quantum paraelectric phase.

Details

Database :
OAIster
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1380454194
Document Type :
Electronic Resource