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Boosting efficiency and accurate modeling of parametric down-conversion processes

机译:参数下转换过程提高效率和准确建模

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Conversion efficiency is boosted by using tandem crystal optical parametric amplifier geometry. We have undertaken comprehensive numerical modeling of the optical systems, where the output beam for the first stage are calculated and then propagated to the second stage. As a concrete example periodically poled lithium niobate crystals are experimentally examined. The phase and amplitude information about the pump and signal beams were retrieved using the Fresnel phase retrieval method and used as input in the theory. This enabled real laboratory conditions to be modeled. Subsequently, the amplitude and phase of the complex pump and signal beam from the crystal was calculated and the results were validated by experiments. Non-collinear interactions in the second stage also yielded an efficient idler output over a broad range of temperatures. ZnGeP_2 crystals were used in the numerical simulations with first and second stage amplification. We predicted an idler energy increase by a more than a factor of 3.
机译:通过使用串联晶体光学参数放大器几何来提高转换效率。我们已经进行了综合的光学系统模型,其中计算了第一级的输出光束,然后传播到第二级。作为一个具体的例子,经过经过实验检查铌酸锂铌酸锂。使用菲涅耳相位检索方法检索关于泵和信号光束的相位和幅度信息,并用作理论中的输入。这使得能够建模的实际实验室条件。随后,计算复合泵的幅度和相位和来自晶体的信号光束,并通过实验验证结果。第二阶段的非共线相互作用也在广泛的温度范围内产生高效的惰轮输出。在具有第一和第二阶段放大的数值模拟中使用ZnGep_2晶体。我们预测了闲置能量增加了3倍。

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