Vector mapping of supercurrent flow in YBCO thin films using polarization of THz radiation excited by femtosecond laser pulses

O. Morikawa, M. Tonouchi
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Abstract

THz radiation is emitted into free space from YBCO thin films by exciting with femtosecond laser pulses under a bias current, magnetic field, and magnetic-flux trapped state. The emission mechanism is proposed to originate from the ultrafast supercurrent modulation by optical pulses. The amplitude of the radiation is proportional to the supercurrent density at the exciting laser spot and it is polarized along the current direction. Formerly, we proposed and demonstrated that the two-dimensional supercurrent distribution can be visualized by scanning the laser spot with detecting the radiation amplitude. We propose a new system for vector mapping of the supercurrent flow by detecting the amplitude and polarization direction of the THz radiation.
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利用飞秒激光脉冲激发的太赫兹辐射偏振对YBCO薄膜中的超电流进行矢量映射
在偏置电流、磁场和磁捕获状态下,用飞秒激光脉冲激发YBCO薄膜向自由空间发射太赫兹辐射。提出其发射机制源于光脉冲对超快电流的调制。辐射的振幅与激发激光光斑处的超电流密度成正比,并沿电流方向极化。在此之前,我们提出并证明了通过扫描激光光斑并检测辐射幅值来显示二维超电流分布。我们提出了一种通过探测太赫兹辐射的振幅和极化方向来实现超电流矢量映射的新系统。
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