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首页> 外文期刊>IEE Proceedings. Part J >Theory and practical calculation of antireflection coatings on semiconductor laser diode optical amplifiers
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Theory and practical calculation of antireflection coatings on semiconductor laser diode optical amplifiers

机译:半导体激光二极管光放大器抗反射涂层的理论和实用计算

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摘要

The reflectivity of the end facet of a 3-D dielectric waveguide can be easily calculated, in case of weak guidance, by replacing the waveguide with a homogeneous medium of refractive index n/sub eq/ while the incident electric (or magnetic) field remains that of the guided mode. The calculation is done through a plane-wave expansion of the incident field; a practical algorithm is given to cope with multidielectric coatings. This process naturally emerges when exact equations are expanded in terms of powers of the weak guidance parameter and it leads to a 1st-order approximation of the reflectivity (i.e. within 2nd-order error) when n/sub eq/ is suitably chosen. The facet can be normal or angled with respect to the waveguide axis.
机译:在弱引导的情况下,可以通过用折射率n / sub eq /的均匀介质替换波导,同时保留入射电场(或磁场),轻松计算3-D介质波导端面的反射率引导模式。计算是通过入射场的平面波扩展完成的。给出了一种应对多介电涂层的实用算法。当根据弱导引参数的幂扩展精确方程式时,自然会出现此过程,并且当适当选择n / sub eq /时,会导致反射率的一阶近似(即在二阶误差内)。刻面可以相对于波导轴垂直或成一定角度。

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