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Tunable a temperature-dependent GST-based metamaterial absorber for switching and sensing applications

机译:可调谐温度相关的基于GST基超材料吸收器,用于开关和传感应用

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摘要

The development of temperature-sensitive tunable metamaterials based on GST particles is one of the hot topics. These metamaterials have rich resonance properties and can be used in communication, optical control, coding, and other fields. However, it is still elusive how to achieve the tunability of metamaterials based on GST particles while maintaining the original resonance performance. In this paper, a tunable Terahertz (THz) metamaterial based on GST particles is verified and measured, which can maintain the original resonances with temperature increasing. Two absorption peaks (P1: 86% at 1.98 THz, P2: 51% at 5.88 THz) and a valley (V1) are achieved by this metamaterial at room temperature. The P1, P2, and V1 of the samples are temperature-sensitive, which are shifted to lower frequencies with temperature increasing. The maximum FOM value is 7651, and the maximum S value is 2190. Moreover, the resonance position of the P2 is always covered by the V1 with the temperature increasing. Therefore, this proposed temperature-sensitive tunable metamaterial realizes the absorption window conversion between P2 peak (or “ON”) and V1 valley (or “OFF”). This proposed metamaterial can be applied to crystallinity sensing.
机译:基于GST粒子的温度敏感可调超材料的开发是一个热门话题之一。这些超材料具有丰富的共振特性,可用于通信,光学控制,编码和其他领域。然而,仍然难以基于GST粒子实现超材料的可调性,同时保持原始谐振性能。在本文中,验证并测量了基于GST颗粒的可调谐太赫兹(THz)超材料,其可以保持具有温度升高的原始谐振。通过在室温下通过该超材料在室温下实现两个吸收峰(P1:86%,在5.88 ZZ)和谷(V1)下实现谷(V1)。样品的P1,P2和V1是温度敏感的,其随温度升高而移动到较低频率。最大FOM值为7651,最大S值为2190.此外,P2的谐振位置总是被V1覆盖,温度升高。因此,该提出的温度敏感的可调性超材料实现了P2峰值(或“ON”)和V1谷(或“OFF”)之间的吸收窗口转换。该提出的超材料可以应用于结晶度感测。

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