论文标题
Terahertz脉冲产生具有非线性INAS MetaSurface中的二元相控制
Terahertz pulse generation with binary phase control in non-linear InAs metasurface
论文作者
论文摘要
Terahertz(THZ)脉冲产生的影响彻底改变了宽带相干光谱和THZ频率成像。但是,THZ脉冲通常缺乏空间结构,而结构化的束对于高级光谱应用至关重要。具有纳米级发射器的非线性光学元面积可以通过在生成阶段定义梁结构来提供解决方案。我们开发了一个非线性INAS跨表面,该跨表面由纳米级光谐振器组成,用于同时生成和结构THZ梁。我们发现谐振器中的Thz脉冲产生受光整流的控制。它比Znte晶体更有效,它使我们能够控制脉冲极性和振幅,从而提供了一个实现二元相thz metasurfaces的平台。为了说明这种能力,我们展示了一种Inas Metalens,该金属同时产生并聚焦了Thz脉冲。使用纳米级发射器对时空结构的控制为THZ束工程和晚期光谱和成像应用打开了门。
The effect of terahertz (THz) pulse generation has revolutionized broadband coherent spectroscopy and imaging at THz frequencies. However, THz pulses typically lack spatial structure, whereas structured beams are becoming essential for advanced spectroscopy applications. Non-linear optical metasurfaces with nanoscale THz emitters can provide a solution by defining the beam structure at the generation stage. We develop a non-linear InAs metasurface consisting of nanoscale optical resonators for simultaneous generation and structuring of THz beams. We find that THz pulse generation in the resonators is governed by optical rectification. It is more efficient than in ZnTe crystals, and it allows us to control the pulse polarity and amplitude, offering a platform for realizing binary-phase THz metasurfaces. To illustrate this capability, we demonstrate an InAs metalens, which simultaneously generates and focuses THz pulses. The control of spatiotemporal structure using nanoscale emitters opens doors for THz beam engineering and advanced spectroscopy and imaging applications.