论文标题
柔性2D THZ光子晶体中的引导模式共振
Guided Mode Resonances in Flexible 2D THz Photonic Crystals
论文作者
论文摘要
在Terahertz(THZ)光子学中,正在进行的努力,以开发具有理想的光质相互作用的介电光子晶体(PHC)平板等薄而紧凑的设备。但是,以前在THZ PHC平板中的作品仅限于厚度$ \ sim $ 100微米的刚性基材。介电PHC板已显示具有平面内模式,这些模式受到外部辐射激发,从而产生尖锐的引导模式共振,以最小的吸收传感器,光学和激光器的应用。在这里,我们确认具有子波长度($λ_{0} $/6- $λ_{0} $/12)柔性介电聚酰亚胺膜的膜型THZ PHC平板中存在引导共振。测量引导共振的透射率是针对晶胞的不同结构参数的。此外,我们利用了样品的灵活性,以调节指导模式的线宽,以降至1.5 GHz,以$θ$ $ \ geq 5^{\ circ} $的弯曲角度调节。通过抑制这些模式在实验中确认。该设备的机械灵活性允许在系统设计中为高速通信,柔软可穿戴光子学和可植入医疗设备提供额外的自由度。
In terahertz (THz) photonics, there is an ongoing effort to develop thin, compact devices such as dielectric photonic crystal (PhC) slabs with desirable light matter interactions. However, previous works in THz PhC slabs are limited to rigid substrates with thicknesses $\sim$ 100s of micrometers. Dielectric PhC slabs have been shown to possess in-plane modes that are excited by external radiation to produce sharp guided mode resonances with minimal absorption for applications in sensors, optics and lasers. Here, we confirm the existence of guided resonances in a membrane-type THz PhC slab with subwavelength ($λ_{0}$/6 - $λ_{0}$/12) thicknesses of flexible dielectric polyimide films. The transmittance of the guided resonances was measured for different structural parameters of the unit cell. Furthermore, we exploited the flexibility of the samples to modulate the linewidth of the guided modes down to 1.5 GHz for bend angle of $θ$ $\geq 5^{\circ}$; confirmed experimentally by the suppression of these modes. The mechanical flexibility of the device allows for an additional degree of freedom in system design for optical components for high-speed communications, soft wearable photonics and implantable medical devices.