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Design of flat-field arrayed waveguide grating based on aberration theory

机译:基于像差理论的平场阵列波导光栅设计

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A new type flat-field arrayed waveguide grating (AWG) has been designed. The focal points of all wavelengths of operation distribute on a straight line. With parallel output waveguides, it's convenient to connect with fiber-array directly. Flat-field AWG could function as a spectrometer when the output waveguides are thrown Off. The work based on the developed aberration theory of AWG. In this theory, the restrains imposing on the conventional Rowland-type AWG have been removed. Various restrains will generate new type structures. In the flat-field AWG design, the restrains come from the concurrent imaging theory. Three aberration-free points restrain three dominant geometry parameters of AWG, geometry of star couplers, phased array ports distribution, and length increment between adjacent paths. A 16-channel flat-field AWG is designed. As stigmatic points introduced, the aberration of the device is much lower than that of the conventional Rowland-type AWG.
机译:设计了一种新型平面阵列波导光栅(AWG)。所有波长的操作焦点在直线上分布。使用并行输出波导,可以直接与光纤阵列连接方便。当输出波导被抛出时,平场AWG可以用作光谱仪。基于AWG发达的像差理论的工作。在本文中,施加在传统的罗兰型AWG上的抑制已被删除。各种抑制将产生新型结构。在平局AWG设计中,抑制来自于同时的成像理论。三个像差点限制AWG,星形耦合器几何的三个主导几何参数,相控阵端口分布和相邻路径之间的长度递增。设计了一个16通道平面AWG。作为引入的耻辱点,该装置的像差远低于传统罗兰型AWG的像差。

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