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Wideband two-port beam splitter of a binary fused-silica phase grating

机译:二进制熔融石英相位光栅的宽带二端口分束器

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摘要

The usual beam splitter of multilayer-coated film with a wideband spectrum is not easy to achieve. We describe the realization of a wideband transmission two-port beam splitter based on a binary fused-silica phase grating. To achieve high efficiency and equality in the diffracted 0th and -1st orders, the grating profile parameters are optimized using rigorous coupled-wave analysis at a wavelength of 1550nm. Holographic recording and the inductively coupled plasma dry etching technique are used to fabricate the fused-silica beam splitter grating. The measured efficiency of (45percent X 2) velence 90percent diffracted into the both orders can be obtained with the fabricated grating under Littrow mounting. The physical mechanism of such a wideband two-port beam splitter grating can be well explained by the modal method based on two-beam interference of the modes excited by the incident wave. With the high damage threshold, low coefficient of thermal expansion, and wideband high efficiency, the presented beam splitter etched in fused silica should be a useful optical element for a variety of practical applications.
机译:具有宽带光谱的多层涂膜的常规分束器不容易实现。我们描述了基于二进制熔融石英相位光栅的宽带传输两端口分束器的实现。为了在衍射的0阶和-1st阶上实现高效率和相等,使用严格的耦合波分析在1550nm波长下优化光栅轮廓参数。全息记录和感应耦合等离子体干法蚀刻技术用于制造熔融石英分束器光栅。可以在Littrow安装下使用制造的光栅来获得衍射到两个阶的(45%X 2)弯度90%的测量效率。这种宽带两端口分束器光栅的物理机制可以通过基于入射波激发模式的两光束干涉的模态方法很好地解释。由于具有高损伤阈值,低热膨胀系数和宽带高效率,因此所提出的用熔融石英刻蚀的分束器应该是用于各种实际应用的有用光学元件。

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