论文标题
螺旋敏感的等离子体teraherts干涉仪
Helicity sensitive plasmonic teraherts interferometer
论文作者
论文摘要
等离子体干涉率是一个快速增长的研究领域,具有在Terahertz频率范围内应用的巨大潜力。在这封信中,我们根据连接到特殊设计的天线的石墨烯场效应晶体管探索等离子干涉仪。作为关键结果,我们观察到圆形辐射辐射到DC光电压引起的螺旋性和相敏感性的转化是由等离激元解关机制引起的:两个等离子体波,在通道内部晶体管干扰的源和排水部分激发。通过使用不对称天线构型来实现这些波之间的螺旋度敏感相移。直流信号随着螺旋性的反转而变化。建议的等离子干涉仪能够测量两个任意相移的光学信号之间的相位差。观察到的效果为二维材料中血浆波激发的相位启动探测开辟了广泛的途径。
Plasmonic interferometry is a rapidly growing area of research with a huge potential for applications in terahertz frequency range. In this Letter, we explore a plasmonic interferometer based on graphene Field Effect Transistor connected to specially designed antennas. As a key result, we observe helicity- and phase-sensitive conversion of circularly-polarized radiation into dc photovoltage caused by the plasmon-interference mechanism: two plasma waves, excited at the source and drain part of the transistor interfere inside the channel. The helicity sensitive phase shift between these waves is achieved by using an asymmetric antenna configuration. The dc signal changes sign with inversion of the helicity. Suggested plasmonic interferometer is capable for measuring of phase difference between two arbitrary phase-shifted optical signals. The observed effect opens a wide avenue for phase-sensisitve probing of plasma wave excitations in two-dimensional materials.