articleTop 10% cited
Coupling of modes analysis of resonant channel add-drop filters
IEEE Journal of Quantum Electronics · 1999 · Vol. 35(9) · pp. 1322–1331
Christina Manolatou✉(Massachusetts Institute of Technology)M. Jalal Khan(Massachusetts Institute of Technology)Shanhui Fan(Massachusetts Institute of Technology)Pierre R. Villeneuve(Massachusetts Institute of Technology)H. A. Haus(Massachusetts Institute of Technology)John D. Joannopoulos(Massachusetts Institute of Technology)
Abstract
The operation principle of resonant channel add-drop filters based on degenerate symmetric and antisymmetric standing-wave modes has been described elsewhere using group theoretical arguments. In this paper, the analysis is carried out using coupling of modes in time. A possible implementation of such a filter is a four-port system utilizing a pair of identical single-mode standing wave resonators. The analysis allows a simple derivation of the constraints imposed on the design parameters in order to establish degeneracy. Numerical simulations of wave propagation through such a filter are also shown, as idealized by a two-dimensional geometry.
Photonic and Optical DevicesAdvanced Fiber Optic SensorsMicrowave Engineering and WaveguidesAntisymmetric relationResonatorPhysicsDegenerate energy levelsCoupling (piping)Degeneracy (biology)Coupling coefficient of resonatorsFilter (signal processing)Standing waveChannel (broadcasting)
Citations
633
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10.74
field-weighted impact
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10
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References
Integrated optics N*N multiplexer on silicon
IEEE Photonics Technology Letters · 1991 · 260 citations
Microring resonator channel dropping filters
Journal of Lightwave Technology · 1997 · 1,646 citations
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