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Highly accurate spatial mode generation using spatial cross modulation method for mode division multiplexing

机译:使用空间交叉调制方法进行模式分割复用的高精度空间模式生成

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摘要

We propose a spatial mode generation technology using spatial cross modulation (SCM) for mode division multiplexing (MDM). The most well-known method for generating arbitrary complex amplitude fields is to display an off-axis computer-generated hologram (CGH) on a spatial light modulator (SLM). However, in this method, a desired complex amplitude field is obtained with first order diffraction light. This critically lowers the light utilization efficiency. On the other hand, in the SCM, the desired complex field is provided with zeroth order diffraction light. For this reason, our technology can generate spatial modes with large light utilization efficiency in addition to high accuracy. In this study, first, a numerical simulation was performed to verify that the SCM is applicable for spatial mode generation. Next, we made a comparison from two view points of the coupling efficiency and the light utilization between our technology and the technology using an off-axis amplitude hologram as a representative complex amplitude generation method. The simulation results showed that our technology can achieve considerably high light utilization efficiency while maintaining the enough coupling efficiency comparable to the technology using an off-axis amplitude hologram. Finally, we performed an experiment on spatial modes generation using the SCM. Experimental results showed that our technology has the great potential to realize the spatial mode generation with high accuracy.
机译:我们提出了一种使用空间交叉调制(SCM)进行模式分割复用(MDM)的空间模式生成技术。生成任意复振幅场的最著名方法是在空间光调制器(SLM)上显示离轴计算机生成的全息图(CGH)。然而,在该方法中,利用一阶衍射光获得了期望的复振幅场。这严重降低了光利用效率。另一方面,在SCM中,期望的复数场被提供有零级衍射光。因此,我们的技术除了可以产生高精度之外,还可以生成具有高光利用率的空间模式。在这项研究中,首先,进行了数值模拟,以验证SCM适用于空间模式生成。接下来,我们从耦合效率和光利用率之间的两个角度对本技术与以离轴振幅全息图为代表的复杂振幅生成方法进行了比较。仿真结果表明,与使用离轴振幅全息图的技术相比,我们的技术可以实现相当高的光利用率,同时保持足够的耦合效率。最后,我们使用SCM进行了空间模式生成的实验。实验结果表明,我们的技术具有实现高精度空间模生成的巨大潜力。

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