论文标题

基于超材料的八度八度Terahertz带通滤波器

Metamaterial-based octave-wide terahertz bandpass filters

论文作者

Maleki, Ali, Singh, Avinash, Jaber, Ahmed, Cui, Wei, Xin, Yongbao, Sullivan, Brian T., Boyd, Robert W., Menard, Jean-Michel

论文摘要

我们基于双层 - 材料(BLMM)结构,介绍Terahertz(THZ)区域中的八度带通滤波器。 Passband区域具有超高斯形状,最大透射率接近70%,典型的停止带拒绝为20 dB。该设计基于跨表面,该元表面由沉积在透明聚合物上的金属方孔阵列组成,该阵列被沉积在透明的聚合物上,该阵列堆叠在相同的跨表面和亚波长度分离的顶部。叠加的跨表面结构是使用有限差分时间域(FDTD)模拟设计的,并使用光刻过程进行了制造。这些结构在0.3至5.8 THz之间的实验表征是使用时间域THZ光谱系统进行的。观察到实验和仿真结果之间的良好一致性。我们还证明了两个叠加的BLMM(2BLMM)设备将滚动的陡度增加到85 dB/八度以上,并使较高的停止拒绝接近40 dB,而最大透射率保持在64%以上。这项工作为新的THZ应用铺平了道路,包括以特定频率为中心的THZ脉冲的检测,以及增强的时间分辨的检测对分子振动的敏感性,这些脉冲对分子振动的敏感性,这些脉冲由强,抗谐振的,抗谐振的,驱动场主导的噪声。

We present octave-wide bandpass filters in the terahertz (THz) region based on bilayer-metamaterial (BLMM) structures. The passband region has a super-Gaussian shape with a maximum transmittance approaching 70% and a typical stopband rejection of 20 dB. The design is based on a metasurface consisting of a metallic square-hole array deposited on a transparent polymer, which is stacked on top of an identical metasurface with a sub-wavelength separation. The superimposed metasurface structures were designed using finite-difference time-domain (FDTD) simulations and fabricated using a photolithography process. Experimental characterization of these structures between 0.3 to 5.8 THz is performed with a time-domain THz spectroscopy system. Good agreement between experiment and simulation results is observed. We also demonstrate that two superimposed BLMM (2BLMM) devices increase the steepness of the roll-offs to more than 85 dB/octave and enable a superior stopband rejection approaching 40 dB while the maximum transmittance remains above 64%. This work paves the way toward new THz applications, including the detection of THz pulses centered at specific frequencies, and an enhanced time-resolved detection sensitivity towards molecular vibrations that are noise dominated by a strong, off-resonant, driving field.

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