论文标题
非线性曲率波前传感器的空间频率响应和灵敏度
Spatial frequency response and sensitivity of the nonlinear curvature wavefront sensor
论文作者
论文摘要
非线性曲率波前传感器(NLCWF)已被证明是现有波前传感器设计的有前途替代方案。理论研究表明,与广泛使用的Shack-Hartmann波前传感器(SHWFS)相比,该设备的固有灵敏度可以提高10倍。名义NLCWFS设计以围绕光学系统瞳孔平面为中心的对称配置中使用四个检测器测量平面。但是,这些平面的确切排列可能会被优化以提高像差敏感性,并最大程度地减少波前重建过程中涉及的迭代次数,从而减少潜伏期。我们对优化NLCWFS设计的参数空间进行了系统的探索。使用一套仿真工具,我们研究了测量平面位置对NLCWF和检测器像素采样的性能的影响。假设Kolmogorov湍流探索了各种视线条件。结果是根据重建后的残留波前误差以及溶液收敛所需的迭代次数提出的。研究了对称四平面设计的替代设计,包括三平面和五平面配置。最后,我们对宽带照明对与天文学和其他应用相关的传感器性能的影响进行初步研究。
The nonlinear curvature wavefront sensor (nlCWFS) has been shown to be a promising alternative to existing wavefront sensor designs. Theoretical studies indicate that the inherent sensitivity of this device could offer up to a factor of 10 times improvement compared to the widely-used Shack-Hartmann wavefront sensor (SHWFS). The nominal nlCWFS design assumes the use of four detector measurement planes in a symmetric configuration centered around an optical system pupil plane. However, the exact arrangement of these planes can potentially be optimized to improve aberration sensitivity, and minimize the number of iterations involved in the wavefront reconstruction process, and therefore reduce latency. We present a systematic exploration of the parameter space for optimizing the nlCWFS design. Using a suite of simulation tools, we study the effects of measurement plane position on the performance of the nlCWFS and detector pixel sampling. A variety of seeing conditions are explored, assuming Kolmogorov turbulence. Results are presented in terms of residual wavefront error following reconstruction as well as the number of iterations required for solution convergence. Alternative designs to the symmetric four-plane design are studied, including three-plane and five-plane configurations. Finally, we perform a preliminary investigation of the effects of broadband illumination on sensor performance relevant to astronomy and other applications.