Wavelength Division Multiplexer Based on Periodic Dielectric Waveguide Ring Resonator

Article Preview

Abstract:

In this paper, we propose and investigate an optical wavelength division multiplexer based on periodic dielectric waveguide ring resonator by using finite-difference time-domain method. From the simulation results, compact and high performance wavelength division multiplexer could be obtained to separate the wavelength of 1.31μm and 1.55μm.

You might also be interested in these eBooks

Info:

Periodical:

Pages:

657-660

Citation:

Online since:

September 2012

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2012 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

[1] Keyao Zhu, Hui Zang, and Biswanath Mukherjee: IEEE Select. Areas in Commun., Vol. 21 (2003), p.1173.

DOI: 10.1109/jsac.2003.815683

Google Scholar

[2] Q. Xu, et al.: Nature, Vol. 435 (2005), p.325.

Google Scholar

[3] M. Kuwata-Gonokami, et al.: Opt. Lett., Vol. 20 (1995), p. (2093).

Google Scholar

[4] B. E. Little, et al. : IEEE Photon. Technol. Lett., Vol. 16 (2004), p.2263.

Google Scholar

[5] T. Tsuchizawa, et al., IEEE J. Quant. Electron, Vol. 11 (2005), p.232.

Google Scholar

[6] X. Xu, et al. : J. Modern Optics, Vol. 58 (2011), p.932.

Google Scholar

[7] S. Fan, et al. : J. Opt. Soc. Am. B, Vol. 12 (1995), p.1267.

Google Scholar

[8] W. Huang, Y. Zhang, and B. Li: Opt. Exp., Vol. 16 (2008), p.1600.

Google Scholar

[9] R. Zhao, T. Zhai, Z. Wang, and Dahe Liu: J. Light. Tech., Vol. 27 (2009), p.4544.

Google Scholar

[10] P. Luan and K. Chang: Opt. Exp., Vol. 15 (2007), p.4536.

Google Scholar

[11] A. Mekis, et al.: Phys. Rev. Lett, Vol. 77 (1996), p.3787.

Google Scholar

[12] S. Li, et al.: Opt. Quant. Electron, Vol. 41 (2009), p.159.

Google Scholar

[13] C. Manolatou, et al.: IEEE J. Quant. Electron, Vol. 35 (1999), p.1322.

Google Scholar