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Dynamical Manipulation of Polar Topologies from Acoustic Phonon Excitations

Louis Bastogne, Fernando Gómez‐Ortiz, Sriram Anand, Philippe Ghosez

2024Nano Letters13 citationsDOIOpen Access PDF

Abstract

Since the recent discovery of polar topologies, a recurrent question has been how to remotely tune them. Many efforts have focused on the pumping of polar optical phonons from optical methods, but with limited success, as only switching between specific phases has been achieved so far. Additionally, the correlation between optical pulse characteristics and the resulting phase is poorly understood. Here, we propose an alternative approach and demonstrate the deterministic and dynamical tailoring of polar topologies using acoustic phonon excitations. Our second-principles simulations reveal that by pumping specific longitudinal and transverse acoustic phonons, various topological textures can be induced in materials like BaTiO 3 or PbTiO 3 . This method leverages the strong coupling between polarization and strain in these materials, enabling predictable and dynamic control of polar patterns. Our findings open up an alternative possibility for the manipulation of polar textures, suggesting a promising research direction.

Topics & Concepts

PhononPolarNetwork topologyTransverse planePhysicsTopology (electrical circuits)Materials scienceCondensed matter physicsComputer scienceQuantum mechanicsMathematicsEngineeringOperating systemCombinatoricsStructural engineeringAcoustic Wave Resonator TechnologiesFerroelectric and Piezoelectric MaterialsMechanical and Optical Resonators
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