Institute of Microelectronics and Optoelectronics, Warsaw University of Technology, Koszykowa 75, 00-662 Warszawa, Poland.
Samara National Research University, 443086 Samara, Russia.
Biosensors (Basel). 2022 Jul 8;12(7):497. doi: 10.3390/bios12070497.
A Bragg grating (BG) is a one-dimensional optical device that may reflect a specific wavelength of light while transmitting all others. It is created by the periodic fluctuation of the refractive index in the waveguide (WG). The reflectivity of a BG is specified by the index modulation profile. A Bragg grating is a flexible optical filter that has found broad use in several scientific and industrial domains due to its straightforward construction and distinctive filtering capacity. WG BGs are also widely utilized in sensing applications due to their easy integration and high sensitivity. Sensors that utilize optical signals for sensing have several benefits over conventional sensors that use electric signals to achieve detection, including being lighter, having a strong ability to resist electromagnetic interference, consuming less power, operating over a wider frequency range, performing consistently, operating at a high speed, and experiencing less loss and crosstalk. WG BGs are simple to include in chips and are compatible with complementary metal-oxide-semiconductor (CMOS) manufacturing processes. In this review, WG BG structures based on three major optical platforms including semiconductors, polymers, and plasmonics are discussed for filtering and sensing applications. Based on the desired application and available fabrication facilities, the optical platform is selected, which mainly regulates the device performance and footprint.
布拉格光栅(BG)是一种一维光学器件,可以反射特定波长的光,同时传输所有其他波长的光。它是通过波导(WG)中的折射率周期性波动而产生的。BG 的反射率由折射率调制轮廓决定。布拉格光栅是一种灵活的光学滤波器,由于其结构简单和独特的滤波能力,在多个科学和工业领域得到了广泛的应用。由于易于集成和高灵敏度,WG BG 也广泛应用于传感应用。与使用电信号进行检测的传统传感器相比,使用光学信号进行传感的传感器具有多个优势,包括更轻、抗电磁干扰能力强、功耗低、工作频率范围宽、性能一致、速度快、损耗和串扰小。WG BG 易于集成到芯片中,并且与互补金属氧化物半导体(CMOS)制造工艺兼容。在本综述中,讨论了基于半导体、聚合物和等离子体的三个主要光学平台的 WG BG 结构,用于滤波和传感应用。根据所需的应用和可用的制造设施,选择光学平台,这主要调节器件性能和尺寸。