论文标题

适应主动反射器技术,以提高快速望远镜的灵敏度和天空覆盖

Adapting Active Reflector Technology for greater sensitivity and sky-coverage in FAST-like Telescopes

论文作者

Li, Jian-Ling, Peng, Bo, Jin, Cheng-Jin, Li, Hui, Strom, Richard G., Liu, Bin, Chai, Xiao-Ming, Liu, Li-Jia

论文摘要

世界上最大的单盘射电望远镜是五百米的光圈球形射电望远镜(快速)为其巨大的反射器实施了创新的技术,该技术将主要反射器的形状从球形变为300 m光圈的抛物线。在这里,我们探讨了如何通过增加照明区域(即,嵌入在球形表面的抛物面的孔径)来进一步提高当前的快速灵敏度。或者,可以通过减少照明的光圈来增加最大天顶角,从而获得更大的天空覆盖率。在快速能力中不同的抛物线孔根据球形表面必须移动以近似抛物面的方式分析了快速能力。如果抛物面的孔径从300 m增加到315 m,快速的敏感性可以提高约10%。抛物线孔位于主球面内,不会超出其边缘。如果我们将抛物面型的孔径降低至220 m,则最大天顶角可以从26.4度增加到大约35度。这仍然具有类似于Arecibo 305 m射电望远镜的灵敏度。还研究了不同孔径的抛物面与不同半径的球形表面之间的径向偏差。进一步得出与抛物面的不同孔径相对应的最大天顶角。具有不同半径的球形表面可以为通过主动反射器技术应用于快速望远镜应用的形状变化提供参考基线。

The Five-hundred-meter Aperture Spherical radio Telescope (FAST), the largest single dish radio telescope in the world, has implemented an innovative technology for its huge reflector, which changes the shape of the primary reflector from spherical to that of a paraboloid of 300 m aperture. Here we explore how the current FAST sensitivity can potentially be further improved by increasing the illuminated area (i.e., the aperture of the paraboloid embedded in the spherical surface). Alternatively, the maximum zenith angle can be increased to give greater sky coverage by decreasing the illuminated aperture.Different parabolic apertures within the FAST capability are analyzed in terms of how far the spherical surface would have to move to approximate a paraboloid. The sensitivity of FAST can be improved by approximately 10 % if the aperture of the paraboloid is increased from 300 m to 315 m. The parabolic aperture lies within the main spherical surface and does not extend beyond its edge. The maximum zenith angle can be increased to approximately 35 degrees from 26.4 degrees, if we decrease the aperture of the paraboloid to 220 m. This would still give a sensitivity similar to the Arecibo 305 m radio telescope. Radial deviations between paraboloids of different apertures and the spherical surfaces of differing radii are also investigated. Maximum zenith angles corresponding to different apertures of the paraboloid are further derived. A spherical surface with a different radius can provide a reference baseline for shape-changing applied through active reflector technology to FAST-like telescopes.

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