Abstract:
In this paper, we present a new accurate numerical method, named leaky mode propagation method, to analyze the radiation loss in grating-assisted codirectional couplers. ...Show MoreMetadata
Abstract:
In this paper, we present a new accurate numerical method, named leaky mode propagation method, to analyze the radiation loss in grating-assisted codirectional couplers. The complex propagation constant and electromagnetic field distribution of the normal modes are evaluated by using a space harmonic field expansion derived from the Floquet theorem. In order to prove the accuracy of our method, a comparison between our results and those calculated by the most used method, i.e., the transfer matrix method, is carried out in terms of power attenuation coefficient and total radiation loss. Quantitative and qualitative discrepancies between the two methods are widely discussed. In particular, an oscillatory variation of radiation loss with grating depth and gap thickness in contrast to the monotonic behavior predicted by the transfer matrix method has been found.<>
Published in: IEEE Journal of Quantum Electronics ( Volume: 31, Issue: 9, September 1995)
DOI: 10.1109/3.406384
Citations are not available for this document.
Cites in Papers - |
Cites in Papers - IEEE (9)
Select All
1.
Nai-Hsiang Sun, Chih-Cheng Chou, Hung-Wen Chang, J.K. Butler, G.A. Evans, "Radiation loss of grating-assisted directional couplers using the Floquet-Bloch theory", Journal of Lightwave Technology, vol.24, no.6, pp.2409-2415, 2006.
2.
C. Ciminelli, F. Peluso, M.N. Armenise, R.M. De La Rue, "Variable oblique incidence for tunability in a two-dimensional photonic-crystal guided-wave filter", Journal of Lightwave Technology, vol.24, no.1, pp.470-476, 2006.
3.
C. Ciminelli, F. Peluso, M.N. Armenise, "Modeling and design of two-dimensional guided-wave photonic band-gap devices", Journal of Lightwave Technology, vol.23, no.2, pp.886-901, 2005.
4.
A. Giorgio, A.G. Perri, M.N. Armenise, "Modeling of fully etched waveguiding photonic bandgap structures", IEEE Journal of Quantum Electronics, vol.38, no.6, pp.630-639, 2002.
5.
A. Giorgio, A.G. Perri, M.N. Armenise, "Very fast and accurate modeling of multilayer waveguiding photonic bandgap structures", Journal of Lightwave Technology, vol.19, no.10, pp.1598-1613, 2001.
6.
V.M.N. Passaro, "Optimal design of grating-assisted directional couplers", Journal of Lightwave Technology, vol.18, no.7, pp.973-984, 2000.
7.
N. Finger, E. Gornik, "Analysis of metallized-grating coupled twin-waveguide structures", IEEE Journal of Quantum Electronics, vol.35, no.5, pp.832-843, 1999.
8.
J.K. Butler, Nai-Hsiang Sun, G.A. Evans, L. Pang, P. Congdon, "Grating-assisted coupling of light between semiconductor and glass waveguides", Journal of Lightwave Technology, vol.16, no.6, pp.1038-1048, 1998.
9.
Nai-Hsiang Sun, J.K. Butler, G.A. Evans, L. Pang, P. Congdon, "Analysis of grating-assisted directional couplers using the Floquet-Bloch theory", Journal of Lightwave Technology, vol.15, no.12, pp.2301-2315, 1997.
Cites in Papers - Other Publishers (6)
1.
Mahsa Valizadeh, Leila Yousefi, MirFaez Miri, "Analytical formulation of spatiotemporal modulated graphene-based waveguides using Floquet-Bloch theory", Scientific Reports, vol.14, no.1, 2024.
2.
G.Z. Masanovic, V.M.N. Passaro, G.T. Reed, "Coupling to nanophotonic waveguides using a dual grating-assisted directional coupler", IEE Proceedings - Optoelectronics, vol.152, no.1, pp.41-48, 2005.
3.
Masaji Tomita, Yoshio Karasawa, "Analysis of Directional Coupler Composed of Two Rectangular Waveguides", IEEJ Transactions on Fundamentals and Materials, vol.123, no.12, pp.1199, 2003.
4.
Vittorio M. N. Passaro, Roberto Diana, Mario N. Armenise, "Optical fiber Bragg gratings. Part I. Modeling of infinitely long gratings", Journal of the Optical Society of America A, vol.19, no.9, pp.1844, 2002.
5.
Hajime Sakata, Wiley Encyclopedia of Electrical and Electronics Engineering, 1999.
6.
Brent E. Little, "Junction problem and loading effects in grating-assisted couplers", Optics Letters, vol.21, no.13, pp.949, 1996.