Liu Dejun, Yu Xi, Wu Feng, Du Weijie, Chen Lin, Liu Feng, Kuwahara Makoto, Ono Shingo
Opt Express. 2023 Jul 3;31(14):23608-23620. doi: 10.1364/OE.494306.
Resonances with both high-quality factor and polarization-independent characteristics are highly desirable for terahertz (THz) sensing. Here, THz sensors based on asymmetric metallic hole arrays (AMHAs) are experimentally demonstrated. Such sensors consisting of four-hole arrays support polarization-independent quasi-bound states in the continuum (BICs). The induced quasi-BIC presents a quality factor exceeding 2000, which enables enhanced sensing for thin membranes. Results show that the frequency shift is 97.5 GHz for the 25-µm thick polyimide (PI), corresponding to a sensitivity of 147.7 GHz/RIU. The sensing performance strongly relates to the enhanced field originating from sharp quasi-BICs. A maximum field enhancement of 15.88 in contrast to the incident field is achieved. When the PI thickness is large than the decay length of enhanced fields, the interaction strength of field-PI becomes weak, resulting in a saturation effect for the shift of quasi-BICs. The proposed sensor possessing polarization-independent quasi-BICs has great potential for practical sensing applications in real-time chemical and biomolecular.
对于太赫兹(THz)传感而言,具有高品质因数和偏振无关特性的共振是非常理想的。在此,基于非对称金属孔阵列(AMHA)的太赫兹传感器得到了实验验证。这种由四孔阵列组成的传感器支持连续谱中的偏振无关准束缚态(BIC)。诱导产生的准BIC呈现出超过2000的品质因数,这使得对薄膜的传感增强成为可能。结果表明,对于25μm厚的聚酰亚胺(PI),频率偏移为97.5GHz,对应灵敏度为147.7GHz/RIU。传感性能与源自尖锐准BIC的增强场密切相关。与入射场相比,实现了高达15.88的最大场增强。当PI厚度大于增强场的衰减长度时,场与PI的相互作用强度变弱,导致准BIC偏移出现饱和效应。所提出的具有偏振无关准BIC的传感器在实时化学和生物分子的实际传感应用中具有巨大潜力。