Stepanov Ivan V, Fatkhiev Denis M, Lyubopytov Vladimir S, Kutluyarov Ruslan V, Grakhova Elizaveta P, Neumann Niels, Khonina Svetlana N, Sultanov Albert K
School of Photonics Engineering and Research Advances (SPhERA), Ufa State Aviation Technical University, 450008 Ufa, Russia.
Center for Photonic Science and Engineering, Skolkovo Institute of Science and Technology, 121205 Moscow, Russia.
Sensors (Basel). 2022 Jan 25;22(3):929. doi: 10.3390/s22030929.
Herein we propose a design of a wavelength-tunable integrated vortex beam emitter based on the silicon-on-insulator platform. The emitter is implemented using a PN-depletion diode inside a microring resonator with the emitting hole grating that was used to produce a vortex beam. The resonance wavelengths can be shifted due to the refractive index change associated with the free plasma dispersion effect. Obtained numerical modeling results confirm the efficiency of the proposed approach, providing a resonance wavelength shift while maintaining the required topological charge of the emitted vortex beam. It is known that optical vortices got a lot of attention due to extensive telecommunication and biochemical applications, but also, they have revealed some beneficial use cases in sensors. Flexibility in spectral tuning demonstrated by the proposed device can significantly improve the accuracy of sensors based on fiber Bragg gratings. Moreover, we demonstrate that the proposed device can provide a displacement of the resonance by the value of the free spectral range of the ring resonator, which means the possibility to implement an ultra-fast orbital angular momentum (de)multiplexing or modulation.
在此,我们提出了一种基于绝缘体上硅平台的波长可调谐集成涡旋光束发射器的设计。该发射器是通过在微环谐振器内部使用一个PN耗尽二极管来实现的,该微环谐振器带有用于产生涡旋光束的发射孔光栅。由于与自由等离子体色散效应相关的折射率变化,谐振波长可以发生偏移。获得的数值模拟结果证实了所提出方法的有效性,即在保持发射的涡旋光束所需拓扑电荷的同时,提供谐振波长的偏移。众所周知,光学涡旋由于广泛的电信和生化应用而受到了很多关注,而且,它们在传感器中也展现出了一些有益的应用案例。所提出的器件所展示的光谱调谐灵活性可以显著提高基于光纤布拉格光栅的传感器的精度。此外,我们证明所提出的器件可以通过环形谐振器的自由光谱范围的值来提供谐振的位移,这意味着有可能实现超快速的轨道角动量(解)复用或调制。