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Impact of beacon wavelength on phase-compensation performance

机译:信标波长对相位补偿性能的影响

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摘要

This study evaluates the effects of beacon-wavelength mismatch on phase-compensation performance. In general, beacon-wavelength mismatch occurs at the system level because the beacon-illuminator laser (BIL) and high-energy laser (HEL) are often at different wavelengths. Such is the case, for example, when using an aperture sharing element to isolate the beam-control sensor suite from the blinding nature of the HEL. With that said, this study uses the WavePlex Toolbox in MATLAB® to model ideal spherical wave propagation through various atmospheric-turbulence conditions. To quantify phase-compensation performance, we also model a nominal adaptive-optics (AO) system. We achieve correction from a Shack-Hartmann wavefront sensor and continuous-face-sheet deformable mirror using a least-squares phase reconstruction algorithm in the Fried geometry and a leaky integrator control law. To this end, we plot the power in the bucket metric as a function of BIL-HEL wavelength difference. Our initial results show that positive BIL-HEL wavelength differences achieve better phase compensation performance compared to negative BIL-HEL wavelength differences (i.e., red BILs outperform blue BILs). This outcome is consistent with past results.
机译:这项研究评估了信标波长失配对相位补偿性能的影响。通常,信标波长失配在系统级别发生,因为信标照明器激光器(BIL)和高能激光器(HEL)通常处于不同的波长。例如,当使用孔径共享元件将光束控制传感器套件与HEL的盲目性隔离时,就是这种情况。话虽如此,本研究使用MATLAB®中的WavePlex工具箱来模拟理想的球面波在各种大气湍流条件下的传播。为了量化相位补偿性能,我们还对标称自适应光学(AO)系统建模。我们使用弗里德几何中的最小二乘相位重建算法和泄漏积分器控制定律,通过Shack-Hartmann波前传感器和连续面板可变形镜实现校正。为此,我们将桶度量中的功率绘制为BIL-HEL波长差的函数。我们的初步结果表明,与负BIL-HEL波长差相比,正BIL-HEL波长差可实现更好的相位补偿性能(即红色BIL的性能优于蓝色BIL)。该结果与过去的结果一致。

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