Nonequilibrium dynamics of α-RuCl3 - a time-resolved magneto-optical spectroscopy study

被引:4
作者
Wagner, Julian [1 ]
Sahasrabudhe, Anuja [1 ]
Versteeg, Rolf [1 ]
Wang, Zhe [2 ]
Tsurkan, Vladimir [3 ,4 ]
Loidl, Alois [3 ]
Hedayat, Hamoon [1 ]
van Loosdrecht, Paul H. M. [1 ]
机构
[1] Univ Cologne, Phys Inst 2, Zulpicher Str 77, D-50937 Cologne, Germany
[2] TU Dortmund Univ, Dept Phys, Otto Hahn Str 4, D-44227 Dortmund, Germany
[3] Univ Augsburg, Ctr Elect Correlat & Magnetism, Expt Phys 5, D-86135 Augsburg, Germany
[4] Inst Appl Phys, MD-2028 Kishinev, Moldova
关键词
D O I
10.1039/d2fd00006g
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
We present time-resolved magneto-optical spectroscopy on the magnetic Mott-Hubbard-insulating Kitaev spin liquid candidate alpha-RuCl3 to investigate the nonequilibrium dynamics of its antiferromagnetically ordered zigzag groundstate after photoexcitation. A systematic study of the transient magnetic linear dichroism under different experimental conditions (temperature, external magnetic field, photoexcitation density) gives direct access to the dynamical interplay of charge excitations with the zigzag ordered state on ultrashort time scales. We observe a rather slow initial demagnetization (few to 10s of ps) followed by a long-lived non-thermal antiferromagnetic spin-disordered state (100-1000s of ps), which can be understood in terms of holons and doublons disordering the antiferromagnetic background after photoexcitation. Varying temperature and fluence in the presence of an external magnetic field reveals two distinct photoinduced dynamics associated with the zigzag and quantum paramagnetic disordered phases. The photo-induced non-thermal spin-disordered state shows universal compressed-exponential recovery dynamics related to the growth and propagation of zigzag domains on nanosecond time scales, which is interpreted within the framework of the Fatuzzo-Labrune model for magnetization reversal. The study of nonequilibrium states in strongly correlated materials is a relatively unexplored topic, but our results are expected to be extendable to a large class of Mott-Hubbard insulator materials with strong spin-orbit coupling.
引用
收藏
页码:237 / 258
页数:22
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