As first demonstrated by Tang and Cohen in chiral optics, the asymmetry in the rate of electromagnetic energy absorption between left and right enantiomers is determined by an optical chirality density. Here, we demonstrate that this effect can exist in magnetic spin systems. By constructing a formal analogy with electrodynamics, we show that in antiferromagnets with broken chiral symmetry, the asymmetry in local spin-wave energy absorption is proportional to a spin-wave chirality density, which is a direct counterpart of optical zilch. We propose that injection of a pure spin current into an antiferromagnet may serve as a chiral symmetry breaking mechanism, since its effect in the spin-wave approximation can be expressed in terms of additional Lifshitz invariants. We use linear response theory to show that the spin current induces a nonequilibrium spin-wave chirality density.
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http://dx.doi.org/10.1103/PhysRevLett.119.177202 | DOI Listing |
Materials (Basel)
November 2024
Electro-Medical Equipment Research Division, Applied Electromagnetic Wave Research Center, Korea Electrotechnology Research Institute, Ansan 15588, Republic of Korea.
In this study, we suggest a method to amplify spin waves (SWs) in antiferromagnets (AFMs). By introducing a non-uniform Dzyaloshinskii-Moriya (DM) interaction, the potential barrier forms a resonant cavity. SWs with an opposite chirality undergo scattering and are resonantly amplified at a phase-matching condition.
View Article and Find Full Text PDFPhys Rev Lett
October 2024
Institute for Solid State Physics, The University of Tokyo, Kashiwa 277-8581, Japan.
Altermagnetism is a newly recognized magnetic class named after the alternating spin polarizations in both real and reciprocal spaces. Like the spin splitting of electronic bands, the magnon bands in altermagnets are predicted to exhibit alternating chiral splitting. In this work, by performing inelastic neutron scattering on α-MnTe, we directly observed the altermagnetic magnon splitting.
View Article and Find Full Text PDFNanomaterials (Basel)
September 2024
International Institute for Sustainability with Knotted Chiral Meta Matter, Kagamiyama, Higashihiroshima 739-8511, Hiroshima, Japan.
J Phys Condens Matter
August 2024
School of Physics, University of Hyderabad, Central University PO, Hyderabad 500046, Telangana, India.
This work brings out many interesting facets of magnetism in the NiAl/NiO core/shell nanoparticle system. Theandmagnetic irreversibility lines (TWI(H)andTSI(H)) reproduce the previously reported - phase diagram at fieldsH⩽30 Oe, but strong departures occur for > 30 Oe. Comparison with the theoretically predicted - phase diagram allows us to identifywithTCG+SG, where the paramagnetic (PM)-chiral glass () and PM-spin glass () phase transitions occur, andwith, the temperature at which transition to the replica symmetry breakingstate takes place.
View Article and Find Full Text PDFNano Lett
June 2024
School of Science and Engineering, The Chinese University of Hong Kong, Shenzhen, Guangdong 518172, China.
We theoretically show the asymmetric spin wave transmission in a coupled waveguide-skyrmion structure, where the skyrmion acts as an effective nanocavity allowing the whispering gallery modes for magnons. The asymmetry originates from the chiral spin wave mode localized in the circular skyrmion wall. By inputting two-tone excitations and mixing them in the skyrmion wall, we observe a unidirectional output magnon frequency comb propagating in the waveguide with a record number of teeth (>50).
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