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Titlebook: Nonlinear Optics and Optical Computing; S. Martellucci,A. N. Chester Book 1990 Springer Science+Business Media New York 1990 atoms.density

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Dynamic Operation of Nonlinear Waveguide Devices for Fast Optical Switchingze, switching times and operating power. These parameters are strongly coupled together, and according to the application which intended one or another may be emphasized. Although the massive parallelism offered by optics is often referred to as one of the major advantages of optical computing, ultr
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Optical Bistability in Coupled-Cavity Semiconductor Lasersemiconductors lasers.. Optical bistability in semiconductor lasers is an interesting subject because of their many advantages: they have optical gain, they can be controlled both electronically and optically, and they can be operated faster than nano- to sub-nanoseconds. In a commonly used scheme, i
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Nonlinear Optical Materials and Deviceseir importance to optical communication, signal processing and computing.. These materials are the major components of nonlinear waveguides, bistable devices and optical logic gates. For high speed otpical signal processing and switching, devices should be fast with response times in the picosecond
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Excitonic Optical Nonlinearities, Four Wave Mixing and Optical Bistability in Multiple Quantum Well mena.. This is of practical consequence for optical switching devices., mode-locking of semiconductor lasers. and phase conjugation. For instance, confinement of excitons in GaAs/AlGaAs multiple quantum well (MQW) structures leads to clearly resolved absorption features at room temperature; nonlinea
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