Cagigas Miguel A, Valle Pedro J, Cagigal Manuel P
Departamento de Física Aplicada, Universidad de Cantabria, Avenida de los Castros, 39005 Santander, Spain.
Opt Express. 2013 May 20;21(10):12744-56. doi: 10.1364/OE.21.012744.
We introduce the use of Super-Gaussian apodizing functions in the telescope pupil plane and/or the coronagraph Lyot plane to improve the imaging contrast in ground-based coronagraphs. We describe the properties of the Super-Gaussian function, we estimate its second-order moment in the pupil and Fourier planes and we check it as an apodizing function. We then use Super-Gaussian function to apodize the telescope pupil, the coronagraph Lyot plane or both of them. The result is that a proper apodizing masks combination can reduce the exoplanet detection distance up to a 45% with respect to the classic Lyot coronagraph, for moderately aberrated wavefronts. Compared to the prolate spheroidal function the Super-Gaussian apodizing function allows the planet light up to 3 times brighter. An extra help to increase the extinction rate is to perform a frame selection (Lucky Imaging technique). We show that a selection of the 10% best frames will reduce up to a 20% the detection angular distance when using the classic Lyot coronagraph but that the reduction is only around the 5% when using an apodized coronagraph.
我们介绍了在望远镜光瞳平面和/或日冕仪洛埃平面中使用超高斯切趾函数,以提高地基日冕仪的成像对比度。我们描述了超高斯函数的特性,估计了它在光瞳和傅里叶平面中的二阶矩,并将其作为切趾函数进行检验。然后,我们使用超高斯函数对望远镜光瞳、日冕仪洛埃平面或两者进行切趾。结果表明,对于中等像差的波前,适当的切趾掩模组合相对于经典洛埃日冕仪可将系外行星探测距离降低达45%。与长球函数相比,超高斯切趾函数可使行星光增强达3倍。提高消光率的一个额外方法是进行帧选择(幸运成像技术)。我们表明,在使用经典洛埃日冕仪时,选择10%最佳帧将使探测角距离降低达20%,但在使用切趾日冕仪时,降低幅度仅约为5%。