Analysis of interferometric configuration for optical devices

Author:

Sharma Himanshu1,Kumar Arun2ORCID

Affiliation:

1. Department of Computer Science & Engineering , JECRC University , Jaipur , India

2. Department of Electrical & Electronics Engineering , JECRC University , Jaipur , India

Abstract

Abstract With the exponential growth in information related applications and the continuous increase in voice over IP (VoIP) applications, the carriers are expanding their networks to provide improved services to their end users. In such cases, the synchronous optical network/synchronous digital hierarchy model is not suitable. In this work, we are going to investigate the electro optic switch with the help of a VB script to simulate the device for various parameters. Further, we will then scan the central electrode voltages and take account of the overlap integral taking place at the output port with the help of waveguide mode. The best switching for switches at different voltages so as to have negligible coupling loss for different input signals is investigated. We aim to evaluate the MZI switches with the Li-Tn channel profile wave guiding structure and confirm their performance as compared to the existing MZI switches.

Publisher

Walter de Gruyter GmbH

Subject

Electrical and Electronic Engineering,Condensed Matter Physics,Atomic and Molecular Physics, and Optics

Reference18 articles.

1. Papadimitriou, GI, Papazoglou, C, Pomportsis, AS. “Optical switching” Wiley series in microwave & optical engineering. US: Wiley-Inter science; 2007. ISBN: 0−471−68596−8.

2. Kenya, S, Yamada, T, Moriwaki, O, Takahashi, H, Okuno, M. Polarization−insensitive MZI switch composed of an in phase shifter array and silica−based plc−integrated polarization beam splitter. San Diego, CA, USA: IEEEXplorer; 2008.

3. Thylen, L. Lithium niobate devices in switching and multiplexing. Philos. Trans. Royal Soc. A, Mathematical and Physical Sciences 1989;329:83–92.

4. Wooten, EL, Kissa, KM, Yi-yan, A, Murphy, EJ, Lafaw, DA, Hallemeier, PF, et al.. A review of Lithium Niobate modulators for fiber−optic communications systems. IEEE J Sel Top Quantum Electron 2000;6:69–80. https://doi.org/10.1109/2944.826874.

5. Maat, DHP. InP−based integrated MZI switches for optical communication [Ph.D. thesis]. The Netherlands: Department of Applied Physics, Delft University of Technology; 2001.

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