MRS Meetings and Events

 

SF10.06.03 2022 MRS Spring Meeting

Real-Time Quantum Dynamics for Controlling Polarization Switching in Ferroelectric Materials

When and Where

May 11, 2022
9:00am - 9:15am

Hawai'i Convention Center, Level 3, 312

Presenter

Co-Author(s)

Bryan Wong1

University of California, Riverside1

Abstract

Bryan Wong1

University of California, Riverside1
To enhance the efficiency of next-generation ferroelectric (FE) electronic devices, new techniques for controlling ferroelectric polarization switching are required. While most prior studies have attempted to induce polarization switching via the excitation of phonons, these experimental techniques required intricate and expensive terahertz sources and have not been completely successful. Here, we propose a new mechanism for rapidly and efficiently switching the FE polarization via laser-tuning of the underlying dynamical potential energy surface. Using time-dependent density functional calculations, we observe an ultrafast switching of the FE polarization in BaTiO<sub>3</sub> within 200 fs. A laser pulse can induce a charge density redistribution that reduces the original FE charge order. This excitation results in both desirable and highly directional ionic forces that are always opposite to the original FE displacements. Our new mechanism enables the reversible switching of the FE polarization with optical pulses that can be produced from existing 800 nm experimental laser sources.<br/><br/><i>Journal of Physical Chemistry Letters</i>, <b>10</b>, 3402-3407 (2019)

Symposium Organizers

Symposium Support

Gold
JEOL Korea Ltd.

Publishing Alliance

MRS publishes with Springer Nature