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Design conditions in the middle range for implementation of integrated ring resonators in LiNbO3 by direct laser writing

机译:通过直接激光写入实现LINBO3中集成环谐振器的中间范围的设计条件

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摘要

The aim of this work is to design an integrated optical ring resonator to be implemented in LiNbO3 with a 2.5 mm radius and an operating wavelength of 1550 nm. Considering these ring parameters, a free spectral range of 71.54 pm and a quality factor of similar to$5 imes 10<^>5$5x105 were calculated. The authors apply results to improve the implementation of femtosecond laser writing in lithium niobate crystals. As it is well-known finite difference time domain method requires large memory and time for processing circuits with large footprint (few square mm), in contrast, the beam propagation method allows to simulate large bends in a simple way. RSoft suite design tools commonly represent circles by closed polygons whose geometrical parameters are not optimised to obtain bending losses as least as possible, as suggested by coherent coupling theory. In this sense, the suitable determination of a splice angle (in this case $1.44<^>circ $1.44 degrees), shape and length for segments are key parameters in the ring design. For this purpose, an ad hoc software was implemented to overcome this drawback. In summary, a 250 sided polygon side showed a suitable coupling performance and established a new layout approach for middle range rings.
机译:这项工作的目的是设计一个集成的光环谐振器,以在LinBO3中实现,其中2.5mm半径和1550nm的工作波长。考虑到这些环参数,71.54 PM的自由谱范围和类似于5美元的质量因子10 倍5 $ 5X105。作者申请结果以改善铌酸锂晶体中飞秒激光写入的实施。由于众所周知的有限差分时间域方法需要大的存储器和时间,用于处理大量占地面积(几平方米)的处理电路,相反,光束传播方法允许以简单的方式模拟大弯曲。 Rsoft Suite Design Tools通常代表封闭多边形的圆圈,其几何参数未得到优化,以尽可能最少地获得弯曲损耗,如连贯耦合理论所提出的。从这个意义上讲,合适的拼接角度的确定(在这种情况下为1.44岁, rISC $ 1.44度),片段的形状和长度是环形设计中的关键参数。为此目的,实施了Ad Hoc软件以克服此缺点。总之,一个250个面的多边形侧展示了合适的耦合性能,并建立了用于中范围环的新布局方法。

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