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Analysis of an optically controlled photonic switch

机译:光控光子开关的分析

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摘要

The principle that the coupling of light between two fiber waveguides can be controlled by the resonant interference of a third waveguide has been developed [Attard, Appl. Opt. 37, 2296-2302 (1998)]. Here significant details concerning the operation of a photonic switch are obtained, and a more complete analysis is presented. Multiple-resonant conditions are identified for slab and fiber control waveguides at large indices of refraction. Thus a selection of materials with an appropriate refractive index anti a Kerr coefficient is rendered more easily. Furthermore it is shown that the light used to control the index of refraction in the control waveguide does not enter the output of the photonic switch but remains confined to the control waveguide, for either a slab or a multimode fiber control waveguide. Spatial fluctuations of the control light beam in the control waveguide do not affect the operation of the photonic switch. Tolerances have been determined for the spacing between the control waveguide and the photonic coupler and also for the index of refraction of the control waveguide. OCIS codes: 060.0060, 060.1810, 060.2340, 230.0230.
机译:已经开发出了可以通过第三波导的谐振干涉来控制两个光纤波导之间的光耦合的原理[Attard,Appl.Chem.Soc。,2004,5,2,3]。选择。 37,2296-2302(1998)]。在此获得了有关光子开关操作的重要细节,并给出了更完整的分析。对于大折射率的平板和光纤控制波导,确定了多谐振条件。因此,更容易选择具有抗克尔系数的适当折射率的材料。此外,示出了用于控制控制波导中的折射率的光对于板状或多模光纤控制波导而言,不会进入光子开关的输出,而是保持局限在控制波导中。控制光束在控制波导中的空间波动不会影响光子开关的操作。已经确定了控制波导和光子耦合器之间的间距以及控制波导的折射率的公差。 OCIS代码:060.0060、060.1810、060.2340、230.0230。

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