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Subcycle control of terahertz waveform polarization using all-optically induced transient metamaterials

机译:使用全光学瞬态超材料对太赫兹波形极化进行子循环控制

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摘要

Coherent radiation with frequencies ranging from 0.3 to 30 THz has recently become accessible using femtosecond laser technology.\udThese terahertz (THz) waves have already been applied in spectroscopy and imaging and can be manipulated using static optical\udelements such as lenses, polarizers and filters. However, ultrafast modulation of THz radiation is required as well, for instance, in\udshort-range wireless communication or for preparing shaped THz transients for the coherent control of numerous material excitations.\udHere, we demonstrate an all-optically created transient metamaterial that allows us to manipulate the polarization of THz waveforms\udwith subcycle switch-on times. The polarization-modulated pulses are potentially interesting for controlling elementary motions such\udas the vibration of crystal lattices, the rotation of molecules and the precession of spins.
机译:飞秒激光技术最近可获取频率范围为0.3到30 THz的相干辐射。这些太赫兹(THz)波已被用于光谱学和成像中,并且可以使用静态光学元素(例如透镜,偏振器和滤光片)进行操纵。 。但是,还需要对THz辐射进行超快调制,例如,在短距离无线通信中或为整形控制多种材料激发而准备成形的THz瞬变。\ ud此处,我们演示了一种全光创建的瞬态超材料,该材料可以允许我们通过子周期开启时间来控制THz波形的极化。偏振调制脉冲可能对于控制基本运动非常有趣,例如控制晶格振动,分子旋转和自旋旋进。

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