论文标题

三面金字塔波前传感器。 ii。新的仙人掌测试床上的初步演示

Three-sided pyramid wavefront sensor. II. Preliminary demonstration on the new CACTI testbed

论文作者

Schatz, Lauren, Codona, Johanan, Long, Joseph D., Males, Jared R., Pullen, Weslin, Lumbres, Jennifer, Van Gorkom, Kyle, Chambouleyron, Vincent, Close, Laird M., Correia, Carlos, Fauvarque, Olivier, Fusco, Thierry, Guyon, Olivier, Hart, Michael, Janin-Potiron, Pierre, Johnson, Robert, Jovanovic, Nemanja, Mateen, Mala, Sauvage, Jean-Francois, Neichel, Benoit

论文摘要

下一代巨大的地面和太空望远镜将首次使用高对比度成像来检测和表征潜在的可居住的陆地系外行星。只有当巨型分割的镜像望远镜(GSMTS)极端自适应光学(EXAO)系统的性能被优化至其全部潜力时,这才能实现。 EXAO系统的关键组成部分是波前传感器(WFS),它测量了大气湍流的畸变。当前和下一代仪器中的常见选择是金字塔波前传感器(PWFS)。 EXAO系统需要对波前的高空间和时间采样来优化性能,因此,WFS需要大型检测器。我们提出了一个闭环测试台演示的三边性金字塔波前传感器(3PWF),作为GSMT-EXAO应用的常规四面金字塔波前(4PWFS)传感器的替代方案,用于新的全面适应性光学光学和冠状动物测试仪器(CACTI)。与4PWF相比,3PWF对读取噪声的敏感性不太敏感,因为它使用了更少的检测器像素。 3PWFS具有进一步的好处:高质量的三面金字塔光学元件比四面金字塔更容易制造。我们详细详细介绍了仙人掌系统的两个组件,自适应光学模拟器和PWFS测试床,其中包括3PWFS和4PWFS。在仙人掌上进行了初步实验,以使用原始强度和斜率映射信号处理方法研究3PWF对4PWF的性能。重复该实验的调制半径为1.6 lambda/d和3.25 lambda/d。我们发现,如果调谐模态环的增长,两个波前传感器的性能是可比的。

The next generation of giant ground and space telescopes will have the light-collecting power to detect and characterize potentially habitable terrestrial exoplanets using high-contrast imaging for the first time. This will only be achievable if the performance of Giant Segmented Mirror Telescopes (GSMTs) extreme adaptive optics (ExAO) systems are optimized to their full potential. A key component of an ExAO system is the wavefront sensor (WFS), which measures aberrations from atmospheric turbulence. A common choice in current and next-generation instruments is the pyramid wavefront sensor (PWFS). ExAO systems require high spatial and temporal sampling of wavefronts to optimize performance, and as a result, require large detectors for the WFS. We present a closed-loop testbed demonstration of a three-sided pyramid wavefront sensor (3PWFS) as an alternative to the conventional four-sided pyramid wavefront (4PWFS) sensor for GSMT-ExAO applications on the new Comprehensive Adaptive Optics and Coronagraph Test Instrument (CACTI). The 3PWFS is less sensitive to read noise than the 4PWFS because it uses fewer detector pixels. The 3PWFS has further benefits: a high-quality three-sided pyramid optic is easier to manufacture than a four-sided pyramid. We detail the design of the two components of the CACTI system, the adaptive optics simulator and the PWFS testbed that includes both a 3PWFS and 4PWFS. A preliminary experiment was performed on CACTI to study the performance of the 3PWFS to the 4PWFS in varying strengths of turbulence using both the Raw Intensity and Slopes Map signal processing methods. This experiment was repeated for a modulation radius of 1.6 lambda/D and 3.25 lambda/D. We found that the performance of the two wavefront sensors is comparable if modal loop gains are tuned.

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