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SUPY: an infrared pyramid wavefront sensor for Subaru

机译:SUPY:斯巴鲁的红外金字塔波前传感器

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The 8 m SUBARU telescope atop Mauna Kea on Hawaii will shortly be equipped with a 188 actuator adaptive optics system (AO 188). Additionally it will be equipped with a Laser guide star (LGS) system to increase the sky coverage of that system. One of the additional tip-tilt sensor which is required to operate AO 188 in LGS mode will be working in the infrared to further enhance the coverage in highly obscured regions of the sky. Currently, various options for this sensor are under study, however the baseline design is a pyramid wavefront sensor. It is currently planned to have this sensor be able to provide also information on higher modes in order to feed AO 188 alone, i.e. without the LGS when NIR-bright guide stars are available. In this paper, we will present the results of the basic design tradeoffs, the performance analysis, and the project plan. Choices to be made concern the number of subapertures available across the primary mirror, the number of corrected modes, control of the AO system in combination with and without LGS, the detector of the wavefront sensor, the operation wavelength range and so forth. We will also present initial simulation results on the expected performance of the device, and the overall timeline and project structure.
机译:夏威夷莫纳克亚山顶的8 m SUBARU望远镜不久将配备188执行器自适应光学系统(AO 188)。此外,它将配备激光导星(LGS)系统,以增加该系统的天空覆盖范围。在LGS模式下操作AO 188所需的另一种倾斜传感器之一将在红外下工作,以进一步增强在天空高度遮盖的区域中的覆盖范围。当前,此传感器的各种选项正在研究中,但是基线设计是金字塔波前传感器。当前计划使该传感器能够提供更高模式的信息,以便仅向AO 188馈电,即当NIR明亮的导星可用时,无需LGS。在本文中,我们将介绍基本设计权衡,性能分析和项目计划的结果。要进行的选择涉及主反射镜上可用的子孔径的数量,校正模式的数量,结合和不结合LGS的AO系统的控制,波前传感器的检测器,工作波长范围等。我们还将介绍有关设备的预期性能以及总体时间表和项目结构的初始仿真结果。

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