Open Access Open Access  Restricted Access Subscription or Fee Access

Planar Light wave Circuits: Reviews and Applications

Prabodh Dalai, C.S. Mishra, K.P. Swain, Subhashree Choudhury, Gopinath Palai, S.K. Nayak

Abstract


PLCs are waveguide devices that integrate fiber-matched optical waveguides on a silicon or glass substrate to provide an efficient means of interaction for guided-wave optical signals. PLCs are used in optical wavelength-division multiplexing, time-division multiplexing systems, and subscriber networks. This study examines recent advancements in PLC technologies such as arrayed-waveguide grating multiplexers, optical add-drop multiplexers, and hybrid optoelectronics integration technologies, as well as their future possibilities. Silicon photonics has lately gained a lot of attention for low-cost applications in the field of optoelectronics, and it's just getting more intriguing with the release of photonic devices. There is also a novel method for reducing the size of silicon devices in order to increase packing density and the performance of silicon photonic circuits.


Keywords


PLC (Planar Light waved circuit), SOI(silica on interface), optical-to-electric-to-optical (OEO), 2D, Waveguide

Full Text:

PDF

References


Kim G. et al. “Low-voltage high-performance silicon photonic devices and photonic integrated circuits operating up to 30 Gb/s”;Optics Express, Vol. 19, Issue 27, pp. 26936-26947 ( Dec.2011)

Miller S. E., “Light propagation in generalized lenslike media,” Bell Syst. Tech. Journal, vol. 44,no-2; pp. 2017-2064, (Apr.1965)

U.S. Patent 4,771,016 Using a rapid thermal process for manufacturing a wafer bonded soi semiconductor, George Bajor et al., Issue date: Sep 13, 1988

Bogaerts W. et al. Large-scale production techniques for photonic nanostructures. Proc. SPIE,5225: page 101–112, (Aug.2003).

Baets R., et.al.; Nanophotonic waveguides in silicon-on-insulator fabricated with CMOS technology; Lightwave Technology, Journal of; Volume: 23 , Issue: 1 Page(s): 401 - 412 ; Jan. 2005.

Fukazawa T.et. al.;Low Loss Intersection of Si Photonic Wire Waveguides;Japanese Journal of Applied Physics, 2004, Vol. 43, No. 2, pp. 646–647 (Oct-2003)

Liu Xiaoping; Nonlinear Applications using Silicon Nanophotonic Wires; Dissertations: 2011; Columbia university; Academic commons

Mishra C.S., Palai G., Simulation studies for reflected light of polymer waveguidefor realization of temperature, Opt.—Int. J. Light Electron Opt. 2015, 126,3656–3658.

Mishra C.S., Palai G., Temperature and pressure effect on GaN waveguide at428.71 terahertz frequency for sensing application, Opt.—Int. J. LightElectron Opt. 2015, 126 (23) pp. 4685–4687.

Mishra C.S., Palai G., Manipulating light with porous silicon for investigationof porosity using finite difference time domain method, Opt.—Int. J. LightElectron Opt. 2016, 127, 1195–1197.


Refbacks

  • There are currently no refbacks.


Copyright (c) 2022 Journal of Microelectronics and Solid State Devices