论文标题
高动态范围空间模式分解
High Dynamic Range Spatial Mode Decomposition
论文作者
论文摘要
低功率光学高阶空间模式的准确读数对精确计量学界的重要性越来越重要。模式传感器用于防止模式不匹配降解量子和减轻热噪声策略。直接模式分析传感器(MODAN)是一项有前途的技术,用于实时监视任意高阶模式。我们演示了带有照片二极管读数的Modan,以减轻CCD的典型动态范围。我们在响应中寻找传感器中的不对称性,以打破摩德和光二极管相对比对中的变性,从而改善了模式传感器的动态范围。我们提供耐受性分析并显示可用于超出一阶空间模式的传感器的方法。
Accurate readout of low-power optical higher-order spatial modes is of increasing importance to the precision metrology community. Mode sensors are used to prevent mode mismatches from degrading quantum and thermal noise mitigation strategies. Direct mode analysis sensors (MODAN) are a promising technology for real-time monitoring of arbitrary higher-order modes. We demonstrate MODAN with photo-diode readout to mitigate the typically low dynamic range of CCDs. We look for asymmetries in the response our sensor to break degeneracies in the relative alignment of the MODAN and photo-diode and consequently improve the dynamic range of the mode sensor. We provide a tolerance analysis and show methodology that can be applied for sensors beyond first-order spatial modes.