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1.
Opt Lett ; 35(20): 3438-40, 2010 Oct 15.
Artículo en Inglés | MEDLINE | ID: mdl-20967092

RESUMEN

We present the theoretical concept of an optical isolator based on resonance splitting in a silicon ring resonator covered with a magneto-optical polymer cladding. For this task, a perturbation method is derived for the modes in the cylindrical coordinate system. A polymer magneto-optical cladding causing a 0.01 amplitude of the off-diagonal element of the dielectric tensor is assumed. It is shown that the derived resonance splitting of the clockwise and counterclockwise modes increases for smaller ring radii. For the ring with a radius of approximately 1.5µm, a 29GHz splitting is demonstrated. An integrated optical isolator with a 10µm geometrical footprint is proposed based on a critically coupled ring resonator.

2.
Opt Lett ; 35(16): 2753-5, 2010 Aug 15.
Artículo en Inglés | MEDLINE | ID: mdl-20717446

RESUMEN

In this Letter we demonstrate broadband electro-optic modulation with frequencies of up to 40 GHz in slotted photonic crystal waveguides based on silicon-on-insulator substrates covered and infiltrated with a nonlinear optical polymer. Two-dimensional photonic crystal waveguides in silicon enable integrated optical devices with an extremely small geometric footprint on the scale of micrometers. The slotted waveguide design optimizes the overlap of the optical and electric fields in the second-order nonlinear optical medium and, hence, the interaction of the optical and electric waves.

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