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首页> 外文期刊>Physical review, B >Ultrafast light-driven simultaneous excitation of coherent terahertz magnons and phonons in multiferroic BiFeO3
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Ultrafast light-driven simultaneous excitation of coherent terahertz magnons and phonons in multiferroic BiFeO3

机译:UltraFast光驱动的Chereent Terahertz Magnons的同时激发多元的Bifeo3中的色调

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The ultrafast switching of magnetization in multiferroic materials by a femtosecond laser could provide various advantages in photonics and magnonics. An efficient approach to control the light-matter interaction is the modulation of ultrafast coherent magnons and phonons in the high-frequency range. Spontaneous Raman and infrared spectra reveal the excitation of magnons and optical phonons in multiferroic BiFeO3 in the sub-fewterahertz range. However, coherent control of such quasiparticles has not been achieved yet. In this study, we demonstrate that linearly polarized laser pulses simultaneously excite coherent magnons [out-of-plane (Psi) and in-plane (Phi) cyclone modes] and optical phonon (E mode) in BiFeO3. Experimental results in conjugation with phenomenological theory, by considering three uniformly distributed magnetic domains, reveal that impulsive stimulated Raman scattering is responsible for the generation of coherent magnons and phonons in BiFeO3. The observation of these terahertz magnon and optical phonon modes paves the way for the development of ultrafast magnetoelectro-optical devices.
机译:通过飞秒激光通过FemtoSecond Materion在多体式材料中的超快切换可以在光子和千万度提供各种优势。控制灯具相互作用的有效方法是在高频范围内调制超快相干粗扬琴和声子。自发的拉曼和红外光谱揭示了次级拍摄范围中的多二二种BIFEO3中振振器和光学声音的激励。然而,尚未实现对这种QuasiPally的相干控制。在这项研究中,我们证明了线性偏振激光脉冲同时激发了相干agons [平面外(PSI)和面内(PHI)旋风模式]和BIFEO3中的光学声子(E模式)。通过考虑三个均匀分布的磁畴,揭示了脉冲刺激的拉曼散射的实验结果,揭示了BifeO3中的相干氧化龙管和声子的产生负责。这些Terahertz Magnon和光学声音模式的观察铺平了超快磁电光器件的开发方式。

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