Title :
Notice of Violation of IEEE Publication Principles
1310/1550 nm photonic crystal based on multimode interference demultiplexer
Author :
Adnan, A.J.M. ; Mohamad, Radziah ; Tengku, I.A. ; Shaari, Sahbudin
Author_Institution :
TM R&D, UPM-MTDC, Serdang
Abstract :
Notice of Violation of IEEE Publication Principles
"1310/1550 nm Photonic Crystal Based on Multimode Interference Demultiplexer,"
by A.J.M Adnan, R.Mohamad, I.A.Tengku, S.Shaari,
in the Joint Conference of the Opto-Electronics and Communications Conference, 2008 and the 2008 Australian Conference on Optical Fibre Technology. OECC/ACOFT 2008., July 2008
After careful and considered review of the content and authorship of this paper by a duly constituted expert committee, this paper has been found to be in violation of IEEE\´s Publication Principles.
This paper contains significant portions of original text from the paper cited below. The original text was copied without attribution (including appropriate references to the original author(s) and/or paper title) and without permission.
Due to the nature of this violation, reasonable effort should be made to remove all past references to this paper, and future references should be made to the following article:
"Self-imaging Phenomena in Multi-mode Photonic Crystal Line-defect Waveguides: Application to Wavelength De-multiplexing"
by Hyun-Jun Kim, Insu Park, Beom-Hoan O, Se-Geun Park, El-Hang Lee, and Seung-Gol Lee,
in Optics Express, Vol. 12, No 23 Nov 2004, OSA
1310/1550 nm photonic crystal based on MMI demultiplexer in photonic crystals was investigated by modeling and computation. Finally the performance of the MMI based demultiplexer was compared to the performance of T-junction demultiplexer.
Keywords :
demultiplexing equipment; optical communication equipment; photonic crystals; MMI demultiplexer; T-junction demultiplexer; multimode interference demultiplexer; photonic crystal; wavelength 1310 nm; wavelength 1550 nm; Dispersion; Electric fields; Electromagnetic waveguides; Imaging; Notice of Violation; Photonic band gap; Photonic crystals; Steady-state;
Conference_Titel :
Opto-Electronics and Communications Conference, 2008 and the 2008 Australian Conference on Optical Fibre Technology. OECC/ACOFT 2008. Joint conference of the
Conference_Location :
Sydney
Print_ISBN :
978-0-85825-807-5
DOI :
10.1109/OECCACOFT.2008.4610354