2011Yunnan Daxue xuebao. Shehui kexue banRequires access

Optimal calculations for the transmission field of Mach-Zehnder channel waveguide switches

Yang Gui-rong

Open publisher page 0 citations

Abstract

Calculations for three-dimensional optical waveguides are successfully simplified into two-dimensional ones by combining the effective index method(EIM) with the finite difference beam propagation method(FD-BPM),and the optical transmission field of Mach-Zehnder switches is calculated and analyzed by two-dimensional effective index-finite difference beam propagation method(EI-FD-BPM).The structure parameters(e.g.the cross section of channel waveguide,the switch structure and its size) of Mach-Zehnder waveguide switches are optimized and a waveguide switch with higher transmission efficiency is achieved.It is demonstrated that the use of a two-dimensional EI-FD-BPM is feasible and easier instead of a three-dimensional FD-BPM,which the result difference from the two methods for the small waveguide structure is within 1.5%,and the calculations are reduced greatly,thus save time effectively.The approach provides theoretical guide for the designing and fabricating optical waveguide device at a high accuracy.

About this research paper

What this paper is about

Calculations for three-dimensional optical waveguides are successfully simplified into two-dimensional ones by combining the effective index method(EIM) with the finite difference beam propagation method(FD-BPM),and the optical transmission field of Mach-Zehnder switches is calculated and analyzed by two-dimensional effective index-finite difference beam propagation method(EI-FD-BPM).The structure parameters(e.g.the cross section of channel waveguide,the switch structure and its size) of Mach-Zehnder waveguide switches are optimized and a waveguide switch with higher transmission efficiency is achieved.It is demonstrated that the use of a two-dimensional EI-FD-BPM is feasible and easier instead of a three-dimensional FD-BPM,which the result difference from the two methods for the small waveguide structure is within 1.5%,and the calculations are reduced greatly,thus save time effectively.The approach provides theoretical guide for the designing and fabricating optical waveguide device at a high accuracy.

Why it matters

A significance statement is not available in the OpenAlex record.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Calculations for three-dimensional optical waveguides are successfully simplified into two-dimensional ones by combining the effective index method(EIM) with the finite difference beam propagation method(FD-BPM),and the optical transmission field of Mach-Zehnder switches is calculated and analyzed by two-dimensional effective index-finite difference beam propagation method(EI-FD-BPM).The structure parameters(e.g.the cross section of channel waveguide,the switch structure and its size) of Mach-Zehnder waveguide switches are optimized and a waveguide switch with higher transmission efficiency is achieved.It is demonstrated that the use of a two-dimensional EI-FD-BPM is feasible and easier instead of a three-dimensional FD-BPM,which the result difference from the two methods for the small waveguide structure is within 1.5%,and the calculations are reduced greatly,thus save time effectively.The approach provides theoretical guide for the designing and fabricating optical waveguide device at a high accuracy.

Key concepts: Beam propagation method, Waveguide, Mach–Zehnder interferometer, Transmission (telecommunications), Optics, Channel (broadcasting), Finite difference method, Optical switch

Related papers

Back to paper searchBrowse research topicsOriginal source
Optimal calculations for the transmission field of Mach-Zehnder channel waveguide switches — Research Paper | ScholarLens