Coherent control of the translational and point group symmetries of crystals with light

Fuente: arXiv
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Main Authors: Khalsa, Guru, Kaaret, Jeffrey Z., Benedek, Nicole A.
Format: Preprint
Published: 2023
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author Khalsa, Guru
Kaaret, Jeffrey Z.
Benedek, Nicole A.
author_facet Khalsa, Guru
Kaaret, Jeffrey Z.
Benedek, Nicole A.
contents We use theory and first-principles calculations to explore mechanisms for control of the translational and point group symmetries of crystals in ultrafast optical experiments. We focus in particular on mechanisms that exploit anharmonic (biquadratic) lattice couplings between a driven infrared-active phonon mode and other modes at arbitrary wave vector, which are always allowed by symmetry in any space group. We use Floquet theory to develop a general phase diagram depicting the various dynamical regimes accessible to materials, with simulated dynamics to illustrate how the biquadratic coupling changes materials structure depending on both extrinsic factors (light pulse characteristics) and intrinsic materials parameters (phonon frequencies, phonon coupling strengths). We use our phase diagram, in conjunction with density functional theory calculations, both to suggest experiments to reveal hidden structural order in perovskite KTaO$_3$, and to provide additional insights into recently reported experiments on SrTiO$_3$ and LiNbO$_3$.
format Preprint
id arxiv_https___arxiv_org_abs_2304_14506
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Coherent control of the translational and point group symmetries of crystals with light
Khalsa, Guru
Kaaret, Jeffrey Z.
Benedek, Nicole A.
Materials Science
Other Condensed Matter
We use theory and first-principles calculations to explore mechanisms for control of the translational and point group symmetries of crystals in ultrafast optical experiments. We focus in particular on mechanisms that exploit anharmonic (biquadratic) lattice couplings between a driven infrared-active phonon mode and other modes at arbitrary wave vector, which are always allowed by symmetry in any space group. We use Floquet theory to develop a general phase diagram depicting the various dynamical regimes accessible to materials, with simulated dynamics to illustrate how the biquadratic coupling changes materials structure depending on both extrinsic factors (light pulse characteristics) and intrinsic materials parameters (phonon frequencies, phonon coupling strengths). We use our phase diagram, in conjunction with density functional theory calculations, both to suggest experiments to reveal hidden structural order in perovskite KTaO$_3$, and to provide additional insights into recently reported experiments on SrTiO$_3$ and LiNbO$_3$.
title Coherent control of the translational and point group symmetries of crystals with light
topic Materials Science
Other Condensed Matter
url https://arxiv.org/abs/2304.14506