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Lyot-based Low Order Wavefront Sensor: Implementation on the Subaru Coronagraphic Extreme Adaptive Optics System and its Laboratory Performance

机译:基于Lyot的低阶波前传感器:Subaru Coronagraphic极端自适应光学系统的实现及其实验室性能

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High throughput, low inner working angle (IWA) phase masks coronagraphs are essential to directly image and characterize (via spectroscopy) earth-like planets. However, the performance of low-IWA coronagraphs is limited by residual pointing errors and other low-order modes. The extent to which wavefront aberrations upstream of the coronagraph are corrected and calibrated drives coronagraphic performance. Addressing this issue is essential for preventing coronagraphic leaks, thus we have developed a Lyot-based low order wave front sensor (LLOWFS) to control the wavefront aberrations in a coronagraph. The LLOWFS monitors the starlight rejected by the coronagraphic mask using a reflective Lyot stop in the downstream pupil plane. The early implementation of LLOWFS at LESIA, Observatoire de Paris demonstrated an open loop measurement accuracy of 0.01 λ/D for tip-tilt at 638 nm when used in conjunction with a four quadrant phase mask (FQPM) in the laboratory. To further demonstrate our concept, we have installed the reflective Lyot stops on the Subaru Coronagraphic Extreme AO (SCExAO) system at the Subaru Telescope and modified the system to support small IWA phase mask coronagraphs (< 1λ/D) on-sky such as FQPM, eight octant phase mask, vector vortex coronagraph and the phase induced amplitude apodization complex phase mask coronagraph with a goal of obtaining milli arc-second pointing accuracy. Laboratory results have shown the measurement of tip, tilt, focus, oblique and right astigmatism at 1.55 μm for the vector vortex coronagraph. Our initial on-sky result demonstrate the closed loop accuracy of < 7 x 10~(-3) λ/D at 1.6 μm for tip, tilt and focus aberrations with the vector vortex coronagraph.
机译:高吞吐量,低内部工作角度(IWA)相掩模调节器对直接图像和表征(通过光谱学)的地球状行星是必不可少的。然而,低IWA血管结的性能受到残余指向误差和其他低位模式的限制。校正调节性的波前像差的程度校正并校准驱动器刺痛性能。解决这个问题对于防止调节泄漏是必不可少的,因此我们开发了一种基于Lyot的低阶波前传感器(LLOWS),以控制调节器中的波前像差。 Llowfs使用在下游瞳孔平面中的反射液位挡板监测了冠状动奏掩模拒绝的星光。 Llowfs在LESIA的早期实施,Dealticatoire de Paris在与实验室中的四象次相位面罩(FQPM)结合使用时,在638nm时,为638nm的尖端倾斜的开环测量精度展示了0.01λ/ d。为了进一步展示我们的概念,我们已经在斯巴鲁望远镜上安装了反光Lyot停止在斯巴鲁望远镜上的Subaru Coronagraphic Extreme Ao(Scexao)系统,并修改了系统,以支持小型IWA相掩模调节(<1λ/ d),如FQPM ,八个八个八个八个致畸掩模,载体涡旋矩形和相诱导的幅度沉积复合相掩模癌,其目的是获得毫秒的秒针精度。实验室结果显示了尖端,倾斜,焦点,倾斜和右边散的测量,用于载体涡旋调节件1.55μm。我们的初始天空结果显示闭合环精度为尖端,倾斜和焦距为1.6μm的闭环精度<7×10〜(-3)λ/ d与载体涡旋矩形。

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