Observation of Collective Resonance Modes in a Chiral Spin Soliton Lattice with Tunable Magnon Dispersion
Observation of Collective Resonance Modes in a Chiral Spin Soliton Lattice with Tunable Magnon Dispersion
复制标题
具有可调谐磁振子色散的手性自旋孤子晶格中集体共振模式的观察
DOI:
10.1103/physrevlett.128.247203
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发表时间:
2022
影响因子:
8.6
通讯作者:
Togawa Y.
中科院分区:
文献类型:
--
作者:
Shimamoto Y.;Matsushima Y.;Hasegawa T.;Kousaka Y.;Proskurin I.;Kishine J.;Ovchinnikov A. S.;Goncalves F. J. T.;Togawa Y.
A chiral spin soliton lattice (CSL), one of the representative systems of a magnetic superstructure, exhibits reconfigurability in periodicity over a macroscopic length scale. Such coherent and tunable characteristics of the CSL lead to an emergence of elementary excitation of the CSL as phononlike modes due to translational symmetry breaking and bring a controllability of the dispersion relation of the CSL phonon. Using a broadband microwave spectroscopy technique, we directly found that higher-order magnetic resonance modes appear in the CSL phase of a chiral helimagnet, which is ascribed to the CSL phonon response. The resonance frequency of the CSL phonon can be tuned between 16 and 40 GHz in the vicinity of the critical field, where the CSL period alters rapidly. The frequency range of the CSL phonon is expected to extend over 100 GHz as extrapolated on the basis of the theoretical model. The present results indicate that chiral helimagnets could work as materials useful for broadband signal processing in the millimeter-wave band.