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Monolithically integrated photonic-crystal devices with photodiodes

In this paper, we demonstrate the monolithic integration of a conventional waveguide, a photonic crystal demultiplexer, a photonic crystal taper coupler, photonic crystal waveguides, and photodiodes in InGaAsP-based material to form a planar nano-optics system. Photonic crystal demultiplexers consis...

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Published in:Optics communications 2011-09, Vol.284 (19), p.4749-4751
Main Authors: Chiu, W.Y., Wu, Y.S., Chan, Y.J., Wang, T.D., Hou, C.H., Chien, H.T., Chen, Chii-Chang
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cited_by cdi_FETCH-LOGICAL-c338t-222e4b5491e9295434ffcc1c5f1886755d7343c10fb5ca263a7e0c64059ed6193
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container_end_page 4751
container_issue 19
container_start_page 4749
container_title Optics communications
container_volume 284
creator Chiu, W.Y.
Wu, Y.S.
Chan, Y.J.
Wang, T.D.
Hou, C.H.
Chien, H.T.
Chen, Chii-Chang
description In this paper, we demonstrate the monolithic integration of a conventional waveguide, a photonic crystal demultiplexer, a photonic crystal taper coupler, photonic crystal waveguides, and photodiodes in InGaAsP-based material to form a planar nano-optics system. Photonic crystal demultiplexers consist of hexagonally arranged air holes. Finite-difference time-domain method is implemented to investigate the performance of the demultiplexer. The system is fabricated using e-beam lithography and conventional photolithography. The input light at wavelengths of 1530 and 1550 nm can be separated using the demultiplexing system. These can then be detected by photodiodes that exhibit a wide-bandwidth performance of 22 GHz.
doi_str_mv 10.1016/j.optcom.2011.04.002
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source ScienceDirect Freedom Collection
subjects Demultiplexers
E-beam lithography
Finite difference method
Lithography
Nano-optics
Photodiodes
Photolithography
Photonic crystal device
Photonic crystals
Waveguides
Wavelength division multiplexer
title Monolithically integrated photonic-crystal devices with photodiodes
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