电场和磁场耦合介导的亚周太赫兹非线性光学

O. Schubert, F. Junginger, B. Mayer, S. Mahrlein, C. Schmidt, D. Brida, A. Pashkin, A. Sell, T. Kampfrath, M. Wolf, A. Leitenstorfer, R. Huber
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引用次数: 2

摘要

强太赫兹电场和磁场被用来驱动半导体、磁性有序固体和分子系统中的极端非线性。电光采样允许我们执行场敏感的二维光谱,包括四波和六波混合在锑化铟,以及太赫兹偏置光学探针实验超出静态介电击穿场。最后,我们介绍了一种由太赫兹磁场分量介导的反铁磁氧化镍相干自旋控制的新方案。
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Sub-cycle THz nonlinear optics mediated by electric and magnetic field coupling
Intense THz electric and magnetic fields are exploited to drive extreme nonlinearities in semiconductors, magnetically ordered solids, and molecular systems. Electro-optic sampling allows us to perform field-sensitive two-dimensional spectroscopy, including four- and six-wave mixing in indium antimonide, as well as THz bias — optical probe experiments beyond static dielectric breakdown fields. Finally, we introduce a novel scheme for coherent spin control in antiferromagnetic nickel oxide mediated by the THz magnetic field component.
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