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Terahertz Beam Steering Concept Based on a MEMS-Reconfigurable Reflection Grating

机译:基于MEMS可重构反射光栅的太赫兹光束转向概念

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摘要

With an increasing number of applications of terahertz systems in industrial fields and communications, terahertz beamforming and beam steering techniques are required for high-speed, large-area scanning. As a promising means for beam steering, micro-electro-mechanical system (MEMS)-based reflection gratings have been successfully implemented for terahertz beam control. So far, the diffraction grating efficiency is relatively low due to the limited vertical displacement range of the reflectors. In this paper, we propose a design for a reconfigurable MEMS-based reflection grating consisting of multiple subwavelength reflectors which are driven by 5-bit, high-throw electrostatic actuators. We vary the number of the reflectors per grating period and configure the throw of individual reflectors so that the reflection grating is shaped as a blazed grating to steer the terahertz beam with maximum diffraction grating efficiency. Furthermore, we provide a mathematical model for calculating the radiation pattern of the terahertz wave reflected by general reflection gratings consisting of subwavelength reflectors. The calculated and simulated radiation patterns of the designed grating show that we can steer the angle of the terahertz waves in a range of up to ± 56.4 with a maximum sidelobe level of −10 dB at frequencies from 0.3 THz to 1 THz.
机译:随着太赫兹系统在工业领域和通信领域的应用日益增多,高速大面积扫描需要太赫兹波束成形和波束控制技术。作为光束转向的一种有希望的手段,基于微机电系统(MEMS)的反射光栅已成功实现了太赫兹光束控制。到目前为止,由于反射器的垂直位移范围有限,衍射光栅效率相对较低。在本文中,我们提出了一种基于可重配置MEMS的反射光栅的设计,该光栅由多个亚波长反射器组成,这些反射器由5位高投静电致动器驱动。我们改变每个光栅周期的反射器数量,并配置单个反射器的投射量,以使反射光栅成形为闪耀光栅,以最大的衍射光栅效率操纵太赫兹光束。此外,我们提供了一个数学模型来计算由亚波长反射器组成的普通反射光栅反射的太赫兹波的辐射方向图。对设计光栅的计算和模拟辐射图表明,在0.3 THz至1 THz的频率下,我们可以将太赫兹波的角度控制在高达±56.4的范围内,最大旁瓣电平为-10 dB。

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