Title :
Optical switching and power control in LiNbO3 coupled waveguide arrays
Author :
Kaplan, Arkady ; Ruschin, Shlomo
Author_Institution :
Dept. of Electr. Eng.-Phys. Electron., Tel-Aviv Univ., Ramat-Aviv, Israel
fDate :
12/1/2001 12:00:00 AM
Abstract :
A diversity of switching and power-distribution functions in coupled multi-waveguide arrays is discussed and demonstrated. Functionality is achieved by varying the effective index in each waveguide independently by means of the electro-optic effect. The splitting and switching functions are attained by the use of a multi-variable optimization procedure. Specifically we demonstrate [1×2] and [1×5] routing and power division and [2×2] cross-connection. Polarization diversity and polarization-independent switching are attained using a special crystal orientation and electrode configuration. Single-polarization routing was measured in most cases, with crosstalk figures of the order of - 15 dB. Polarization-independent switching was achieved with crosstalk of less than - 19 dB for a three-waveguide [1× ] switch. By addition of dummy guides, a polarization-independent [2×2] cross-connection function could be attained with crosstalk figures better than -30 dB
Keywords :
crystal orientation; electro-optical effects; electro-optical modulation; light polarisation; lithium compounds; network routing; optical arrays; optical couplers; optical crosstalk; optical fabrication; optical materials; optical planar waveguides; optical switches; optical waveguide theory; power control; LiNbO3; LiNbO3 coupled waveguide arrays; [1x2] routing; [1x5] routing; [2x2] cross-connection; coupled multi-waveguide arrays; coupled waveguide arrays; crosstalk; crosstalk figures; dummy guides; effective index; electro-optic effect; electrode configuration; functionality; multi-variable optimization procedure; polarization diversity; polarization-independent [2x2] cross-connection function; polarization-independent switching; power division; power-distribution functions; single-polarization routing; special crystal orientation; splitting functions; switching; switching functions; three-waveguide [1x2] switch; waveguide; Optical arrays; Optical coupling; Optical crosstalk; Optical devices; Optical fiber polarization; Optical modulation; Optical refraction; Optical variables control; Optical waveguides; Power control;
Journal_Title :
Quantum Electronics, IEEE Journal of