Giant effective magnetic fields from optically driven chiral phonons in 4f paramagnets

We present a mechanism by which optically driven chiral phonon modes in rare-earth trihalides generate giant effective magnetic fields acting on the paramagnetic 4f spins. With cerium trichloride (CeCl_{3}) as our example system, we calculate the coherent phonon dynamics in response to the excitatio...

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Main Authors: Dominik M. Juraschek, Tomáš Neuman, Prineha Narang
Format: Article
Language:English
Published: American Physical Society 2022-02-01
Series:Physical Review Research
Online Access:http://doi.org/10.1103/PhysRevResearch.4.013129
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author Dominik M. Juraschek
Tomáš Neuman
Prineha Narang
author_facet Dominik M. Juraschek
Tomáš Neuman
Prineha Narang
author_sort Dominik M. Juraschek
collection DOAJ
description We present a mechanism by which optically driven chiral phonon modes in rare-earth trihalides generate giant effective magnetic fields acting on the paramagnetic 4f spins. With cerium trichloride (CeCl_{3}) as our example system, we calculate the coherent phonon dynamics in response to the excitation by an ultrashort terahertz pulse using a combination of phenomenological modeling and first-principles calculations. We find that effective magnetic fields of over 100 T can possibly be generated that polarize the spins for experimentally accessible pulse energies. The direction of induced magnetization can be reversed by changing the handedness of circular polarization of the laser pulse. The underlying process is a phonon analog of the inverse Faraday effect in optics that has been described recently, and which enables novel ways of achieving control over and switching of magnetic order at terahertz frequencies.
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spelling doaj.art-10392d8ea3b2438bb662ea0b8011051f2024-04-12T17:18:12ZengAmerican Physical SocietyPhysical Review Research2643-15642022-02-014101312910.1103/PhysRevResearch.4.013129Giant effective magnetic fields from optically driven chiral phonons in 4f paramagnetsDominik M. JuraschekTomáš NeumanPrineha NarangWe present a mechanism by which optically driven chiral phonon modes in rare-earth trihalides generate giant effective magnetic fields acting on the paramagnetic 4f spins. With cerium trichloride (CeCl_{3}) as our example system, we calculate the coherent phonon dynamics in response to the excitation by an ultrashort terahertz pulse using a combination of phenomenological modeling and first-principles calculations. We find that effective magnetic fields of over 100 T can possibly be generated that polarize the spins for experimentally accessible pulse energies. The direction of induced magnetization can be reversed by changing the handedness of circular polarization of the laser pulse. The underlying process is a phonon analog of the inverse Faraday effect in optics that has been described recently, and which enables novel ways of achieving control over and switching of magnetic order at terahertz frequencies.http://doi.org/10.1103/PhysRevResearch.4.013129
spellingShingle Dominik M. Juraschek
Tomáš Neuman
Prineha Narang
Giant effective magnetic fields from optically driven chiral phonons in 4f paramagnets
Physical Review Research
title Giant effective magnetic fields from optically driven chiral phonons in 4f paramagnets
title_full Giant effective magnetic fields from optically driven chiral phonons in 4f paramagnets
title_fullStr Giant effective magnetic fields from optically driven chiral phonons in 4f paramagnets
title_full_unstemmed Giant effective magnetic fields from optically driven chiral phonons in 4f paramagnets
title_short Giant effective magnetic fields from optically driven chiral phonons in 4f paramagnets
title_sort giant effective magnetic fields from optically driven chiral phonons in 4f paramagnets
url http://doi.org/10.1103/PhysRevResearch.4.013129
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