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Coherent Two-Dimensional Terahertz Magnetic Resonance Spectroscopy of Collective Spin Waves

机译:集体旋转波的相干二维太赫兹磁共振光谱

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摘要

We report a demonstration of two-dimensional (2D) terahertz (THz) magnetic resonance spectroscopy using the magnetic fields of two time-delayed THz pulses. We apply the methodology to directly reveal the nonlinear responses of collective spin waves (magnons) in a canted antiferromagnetic crystal. The 2D THz spectra show all of the third-order nonlinear magnon signals including magnon spin echoes, and 2-quantum signals that reveal pairwise correlations between magnons at the Brillouin zone center. We also observe second-order nonlinear magnon signals showing resonance-enhanced second-harmonic and difference-frequency generation. Numerical simulations of the spin dynamics reproduce all of the spectral features in excellent agreement with the experimental 2D THz spectra.
机译:我们报告了使用两个时间延迟THz脉冲的磁场的二维(2D)太赫兹(THz)磁共振光谱的演示。我们应用方法,直接揭示集体旋转波(千吨)在倾斜的反铁磁晶体中的非线性响应。 2D THz光谱显示所有三阶非线性Magnon信号,包括MAGNON自旋回波,以及2 - 量子信号,显示布里渊区中心的千吨之间的成对相关性。我们还观察到显示谐振增强的二次谐波和差频生成的二阶非线性Magnon信号。自旋动力学的数值模拟再现与实验2D THz光谱的优异协议中的所有光谱特征。

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