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Speckle noise in highly corrected coronagraphs

机译:高度校正的日冕仪中的斑点噪声

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Speckles in a highly corrected adaptive optic imaging system have been studied through numerical simulations and through analytic and algebraic investigations of the Fourier-optical expressions connecting pupil plane and focal plane, which simplify at high Strehl ratio. Significant insights into the behavior of speckles, and the speckle noise caused when they vary over time, have thus been gained. Such speckle noise is expected to set key limits on the sensitivity of searches for companions around other stars, including extrasolar planets . In most cases, it is advantageous to use a coronagraph of some kind to suppress the bright primary star and so enhance the dynamic range of companion searches. In the current paper, I investigate speckle behavior and its impact on speckle noise in some common coronagraphic architectures, including the classical Lyot coronagraph and the new four quadrant phase mask (FQPM) concept.
机译:通过数值模拟以及连接瞳孔平面和焦平面的傅立叶光学表达式的解析和代数研究,对高度校正的自适应光学成像系统中的斑点进行了研究,这些表达式在高Strehl比下得以简化。因此,获得了对斑点行为以及当斑点随时间变化而引起的斑点噪声的重要见解。预期这种斑点噪声将为搜寻围绕其他恒星(包括太阳系外行星)的同伴的灵敏度设定关键限制。在大多数情况下,使用某种日冕仪来抑制明亮的初星是有利的,这样可以增加伴随搜索的动态范围。在当前的论文中,我研究了在一些常见的电晕成像体系结构中的斑点行为及其对斑点噪声的影响,这些体系结构包括经典的Lyot电晕仪和新的四象限相位掩模(FQPM)概念。

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