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Colour selective control of terahertz radiation using two-dimensional hybrid organic inorganic lead-trihalide perovskites

机译:二维杂化有机无机三卤化铅钙钛矿对太赫兹辐射的颜色选择性控制

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摘要

Controlling and modulating terahertz signals is of fundamental importance to allow systems level applications. We demonstrate an innovative approach for controlling the propagation properties of terahertz (THz) radiation, through use of both the excitation optical wavelength (colour) and intensity. We accomplish this using two-dimensional (2D) layered hybrid trihalide perovskites that are deposited onto silicon substrates. The absorption properties of these materials in the visible range can be tuned by changing the number of inorganic atomic layers in between the organic cation layers. Optical absorption in 2D perovskites occurs over a broad spectral range above the bandgap, resulting in free carrier generation, as well as over a narrow spectral range near the bandedge due to exciton formation. We find that only the latter contribution gives rise to photo-induced THz absorption. By patterning multiple 2D perovskites with different optical absorption properties onto a single device, we demonstrate both colour selective modulation and focusing of THz radiation. These findings open new directions for creating active THz devices.
机译:控制和调制太赫兹信号对于允许系统级应用至关重要。我们演示了通过使用激发光波长(颜色)和强度来控制太赫兹(THz)辐射的传播特性的创新方法。我们使用沉积在硅基板上的二维(2D)层状混合三卤化物钙钛矿完成此任务。这些材料在可见光范围内的吸收特性可以通过改变有机阳离子层之间的无机原子层数来调整。 2D钙钛矿中的光吸收发生在带隙上方的宽光谱范围内,导致产生自由载流子,以及由于激子形成而在带边缘附近的窄光谱范围内发生。我们发现只有后者的贡献会引起光诱导的THz吸收。通过将具有不同光吸收特性的多个2D钙钛矿图案化到单个设备上,我们展示了颜色选择性调制和THz辐射聚焦。这些发现为创建有源THz设备开辟了新的方向。

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