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  • About
  • The Global ETD Search service is a free service for researchers to find electronic theses and dissertations. This service is provided by the Networked Digital Library of Theses and Dissertations.
    Our metadata is collected from universities around the world. If you manage a university/consortium/country archive and want to be added, details can be found on the NDLTD website.
1

ImplementaÃao de porta lÃgicas Ãpticas com acoplador direcional nÃo linear triplo planar simÃtrico de fÃbras Ãpticas. / IMPLEMENTATION OF OPTIC LOGICAL GATES WITH THREE-CORE NONLINEAR DIRECTIONAL SYMMETRIC FIBER COUPLER

Josà Wally MendonÃa Menezes 07 February 2006 (has links)
FundaÃÃo de Amparo à Pesquisa do Estado do Cearà / Neste trabalho, portas lÃgicas Ãpticas sÃo propostas a partir da utilizaÃÃo de um acoplador direcional nÃo linear (NLDC) triplo planar simÃtrico de fibra Ãptica e com um dos guias operando como controle. Para tal fim, obtemos as caracterÃsticas de transmissÃo do acoplador e, em seguida, fizemos uma anÃlise do coeficiente de extinÃÃo e do fator de compressÃo. Inicialmente, investigamos o desempenho do acoplador proposto operando no regime CW e posteriormente utilizando pulsos ultracurtos, tipo sÃliton com 2ps de largura. Com o modelo proposto para o dispositivo, conseguimos efetivar portas lÃgicas AND, NAND, OR, XOR e NOT para um conjunto de fases aplicadas ao pulso de controle. As portas lÃgicas geradas com o dispositivo operando com sinais CW, apresentaram-se mais eficientes que as mesmas portas geradas com sinais pulsados. / In this work, optical logical gates are proposed starting from the use of a symmetric three-core nonlinear directional coupler (NLDC) of fiber optic and with one of the guides operating as control. For such end, we obtain the characteristics of transmission of the coupler and, soon afterwards, we made an analysis of the extinction ratio and of the compression factor. Initially, we investigated the acting of the proposed coupler operating in the regime CW and later using ultra short pulses, type sÃliton with 2ps of width. With the model proposed for the device, we got to execute logical gates AND, NAND, OR, XOR and NOT for a group of applied phases to the control pulse. The logical gates generated with the device operating with signs CW, they came more efficient than the same gates generated with soliton pulses.

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