An all-optical NOT logic operation based on a chloroform filled geometrically asymmetric triangular triple-core PCF

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TitreAn all-optical NOT logic operation based on a chloroform filled geometrically asymmetric triangular triple-core PCF
Type de publicationConference Paper
Year of Publication2015
AuteursUthayakumar T., R. Raja VJayakantha, Grelu P, Porsezian K.
Conference Name2015 WORKSHOP ON RECENT ADVANCES IN PHOTONICS (WRAP)
PublisherIEEE
Conference Location345 E 47TH ST, NEW YORK, NY 10017 USA
ISBN Number978-1-5090-3921-0
Mots-clésall optical steering, coupled nonlinear Schrodinger equation, Finite element method, logic gates and split step Fourier method, Photonie crystal fiber coupler
Résumé

We present an all optical NOT logic operation based on a geometrically asymmetric triangular triple core photonic crystal fiber (ATPCF), where the guiding cores are filled with highly nonlinear liquid chloroform. By employing the finite element method, necessary optical parameters of the proposed geometry are determined. The steering characteristics which attributes the critical power necessary for the control signal is obtained numerically via coupled nonlinear Schrodinger equations. Through extinction ratio calculations, the Boolean operation of NOT logic gate is illustrated with an appropriate control signal. This study accomplish the idea of an efficient NOT logic operation based on ATPCF geometry. As well as provides the sensitive dependence of geometrical asymmetry on input conditions for performing logic operations.