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Two-path solid-state interferometry using ultra-subwavelength two-dimensional plasmonic waves

机译:使用超亚波长二维等离子体波的两路固态干涉仪

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摘要

We report an on-chip solid-state Mach-Zehnder interferometer operating on two-dimensional (2D) plasmonic waves at microwave frequencies. Two plasmonic paths are defined with GaAs/AlGaAs 2D electron gas 80 nm below a metallic gate. The gated 2D plasmonic waves achieve a velocity of ∼c/300 (c: free-space light speed). Due to this ultra-subwavelength confinement, the resolution of the 2D plasmonic interferometer is two orders of magnitude higher than that of its electromagnetic counterpart at a given frequency. This gigahertz proof-of-concept at cryogenic temperatures can be scaled to the terahertz–infrared range for room temperature operation, while maintaining the benefits of ultra-subwavelength confinement.
机译:我们报告了一种在微波频率下以二维(2D)等离子体波运行的片上固态Mach-Zehnder干涉仪。通过在金属栅下方80 nm的GaAs / AlGaAs 2D电子气定义了两个等离激元路径。门控的二维等离激元波的速度约为〜c / 300(c:自由空间光速)。由于这种超亚波长限制,在给定的频率下,二维等离子干涉仪的分辨率比其电磁对等仪的分辨率高两个数量级。在室温下运行时,这种千兆赫的概念证明可以扩展到太赫兹-红外范围,同时保持超亚波长限制的优势。

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