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    Monitoring of traffic using unmanned aerial vehicle in malaysia landscape perspective
    (2016-03-01)
    Ahmad Noorden, Ahmad Fakhrurrazi
    ;
    Daud, Suzairi
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    Haider Rizvi, Syed Zuhaib
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    Ali, Jalil
    ;
    Yupapin, Preecha P.
    The theoretical investigation has been performed on the implementation of optical Mobius shape in add-drop microring resonator. The modified add-drop Mobius configuration is used to investigate the optical bistability and the spectral transmission. The optical bright soliton pulse is used as the input source of the resonator system. The pulses propagation of the resonator system is modelled using the iterative programming based on the transfer matrix analysis equations. The enhancement of nonlinear effect of the resonator system is achieved by the add-drop Mobius resonator configuration. The system has been modelled for a variation of coupling coefficient for increase the bistable signal properties. The Add-drop Mobius MRR generated a bistable signal with 6.01 mW hysteresis width, and 9.47 mW output switch power with optimized radius of 5 μm outer and 4.5 m inner ring parts with 50 mW controlled power and input power. Mobius configuration is found as the better shape of resonator cavity that capable of optical switching application.
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    All-optical hysteresis switching using mobius configuration microring resonator circuit
    (2015-01-01)
    Noorden, Ahmad Fakhrurrazi Ahmad
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    Mohamad, Azam
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    Bahadoran, Mahdi
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    Chaudhary, Kashif
    ;
    Aziz, M. S.
    The novel twisted ring resonator called add-drop Mobius microring resonator is introduced and modelled with the analytical solution of transfer matrix methods for the generation of optical bistability. Simulated results show that, the add-drop Mobius configuration provides greater phase shift due to the longer length of propagation per roundtrip than add-drop filter configuration. In add-drop Mobius system, drop port generated the optical bistable hysteresis loop with 19.25 mW output switching power and through port generated lower switching power as 5.55 mW. The drop port of the system is found as the suitable port for the operating the all-optical hysteresis switching.
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    Optical bistability in all-pass mobius configuration microring resonator
    (2015-01-01)
    Noorden, Ahmad Fakhrurrazi Ahmad
    ;
    Bahadoran, Mahdi
    ;
    Chaudhary, Kashif
    ;
    Aziz, Muhammad Safwan
    ;
    Jalil, Muhammad Arif
    A novel design of microring resonator called all-pass Mobius ring resonator is used to study optical bistability effect and spectral transmission for all-optical switching application with clockwise hysteresis loop operation. The bright soliton pulse is applied as the input source of the system. The propagation of the pulses within the system is simulated using the transfer matrix analysis. The all-pass Mobius ring resonator is able to operate under high nonlinearity as it has longer propagation length per roundtrip. The all-pass Mobius provides low transmission peak power of 3.65 mW as compared to the conventional all-pass configuration. The output-to-input relation of both design shows that the Mobius configuration is able to generate a higher hysteresis loop width of the bistable signal from 15.79 mW to 18.10 mW input power. The switching power of the optical bistability in Mobius configuration is 3.67 mW for threshold power of 16.95mW. This work shows the Mobius configuration is more suitable to be used for all-optical switching application as compared to the conventional all-pass ring resonator configuration.
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    Coupler-loss and coupling-coefficient dependence of bistability and instability in a fiber ring resonator: Nonlinear behaviors
    (2007-01-01)
    Yupapin, P. P.
    ;
    Saeung, P.
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    Suwancharoen, W.
    In this paper we demonstrate the dynamic simulation of light traveling in a nonlinear fiber optic ring resonator (FORR) with a single coupler. The mathematical relations describing the nonlinear characteristics of the FORR are derived from light transmission theory in linear optical systems. Optical nonlinear phenomena such as bifurcation and chaos are investigated for optical bistability and the Ikeda instability. It is found that for the Ikeda instability of light inside a FORR, the ring-cavity lifetime is much longer than the Kerr-effect response time of the fiber ring. Transmission curves of bistability and instability are shown as a function of the coupler insertion losses (γ) and the coupling coefficients (κ). © World Scientific Publishing Company.