论文标题

通过连续体中的quasibound sates共同增强了无蚀刻薄膜的电场传感

Resonantly Enhanced Electric-Field Sensing of Etchless Thin Film Lithium Niobate via Quasibound Sates in the Continuum

论文作者

Huang, Zhijin, Wang, Junzhong, Yuan, Lifang, Shen, Kaixiang, Li, Qianqian, Wang, Juan

论文摘要

电场检测已被广泛用于科学研究和综合电路等许多领域。为了增强电子场传感器的调谐灵敏度,在本文中,我们从理论上提出了一个高度敏感的电子场传感器,该传感器由可见的近红外型型中的无蚀刻锂(LN)材料(LN)材料和混合偶联晶状体组成。这种配置支持高质量因子准BIC共振,从而产生强大的局部场约束。由于LN材料的较大的电声学系数,可以通过调整LN材料的折射率来移动共振的波长和反射比。进行了分析理论,以解释折射率变化与应用电压之间的关系,因此我们成功地获得了40.8 nm/v的调谐灵敏度,最小可检测到的电场幅度为24.5 mV,波长分辨率为1 nm。由于LN材料的寄生电容低以及被用作电极的金膜和ITO层的高电导率,因此设备的3DB带宽应超过154 GHz。而且我们认为,这种表面正常的电子场传感器对于极弱的电场检测具有广泛的潜力。

Electric field detection has been widely utilized in many fields such as scientific research and integrated circuits. To enhance the tuning sensitivity of E-field sensor, in this paper, we theoretically proposed a highly sensitive E-field sensor composed of etchless lithium niobate (LN) material and hybrid coupling-grating systems in the visible near-infrared regime. Such configuration supports high-quality factor quasi-BIC resonance, which generates strong localized field confinement. Due to the large electro-optic coefficient of LN material, one can shift the wavelength and reflection ratio of resonance by tuning the refractive index of LN material. An analytical theory is carried out to explain the relationship between the refractive index variations and the applied voltages, so we successfully obtained a tuning sensitivity of 40.8 nm/V and a minimum detectable electric field amplitude of 24.5 mV with wavelength resolution of 1 nm. Due to the low parasitic capacitance of LN material and high conductivity of gold film and ITO layer which are utilized as the electrodes, the 3dB bandwidth of the devices should exceed 154 GHz. And we believe that such a surface-normal E-field sensor has extensive potential for the extremely weak electric field detection.

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