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Oral presentation

Spin quadrupole excitations in spin nematics

Onishi, Hiroaki

no journal, , 

Oral presentation

High-rank multipole ordering in f-electron systems

Kambe, Shinsaku

no journal, , 

Oral presentation

Spin-energy conversion via emergent electromagnetic fields

Ieda, Junichi; Yamane, Yuta*; Maekawa, Sadamichi

no journal, , 

Oral presentation

Optomagnonic Barnett effect

Nakata, Koki

no journal, , 

Combining the technologies of quantum optics and magnonics, we find that the circularly polarized laser can dynamically realize the quasiequilibrium magnon Bose-Einstein condensates (BEC). The Zeeman coupling between the laser and spins generates the optical Barnett field. We show that the optical Barnett field develops the total magnetization in insulating ferrimagnets with reversing the local magnetization, which leads to the quasiequilibrium magnon BEC. This laser-induced magnon BEC transition through optical Barnett effect, dubbed the optomagnonic Barnett effect, provides an access to coherent magnons in the high frequency regime of the order of terahertz. The optomagnonic Barnett effect is a key ingredient for the application to spintronics (e.g., spin Josephson effect).

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