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Commissioning and first light results of an L'-band vortex coronagraph with the Keck II adaptive optics NIRC2 science instrument

机译:使用Keck II自适应光学NIRC2科学仪器对L'波段涡旋日冕仪进行调试和首次发光结果

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摘要

On March 2015 an L'-band vortex coronagraph based on an Annular Groove Phase Mask made up of a diamond sub-wavelength grating was installed on NIRC2 as a demonstration project. This vortex coronagraph operates in the L' band not only in order to take advantage from the favorable star/planet contrast ratio when observing beyond the K band, but also to exploit the fact that the Keck II Adaptive Optics (AO) system delivers nearly extreme adaptive optics image quality (Strehl ratios values near 90%) at 3.7μm. We describe the hardware installation of the vortex phase mask during a routine NIRC2 service mission. The success of the project depends on extensive software development which has allowed the achievement of exquisite real-time pointing control as well as further contrast improvements by using speckle nulling to mitigate the effect of static speckles. First light of the new coronagraphic mode was on June 2015 with already very good initial results. Subsequent commissioning nights were interlaced with science nights by members of the VORTEX team with their respective scientific programs. The new capability and excellent results so far have motivated the VORTEX team and the Keck Science Steering Committee (KSSC) to offer the new mode in shared risk mode for 2016B.
机译:2015年3月,作为演示项目,在NIRC2上安装了一个基于环形槽相位掩模的L'波段涡旋日冕仪,该环形掩模由一个金刚石亚波长光栅组成。该涡旋日冕仪在L'波段工作,不仅是为了在超过K波段进行观测时利用有利的星/行星对比度,而且还利用了Keck II自适应光学(AO)系统几乎可以提供极端效果的事实3.7μm的自适应光学图像质量(Strehl比值接近90%)。我们描述了例行NIRC2服务任务期间涡旋相位掩模的硬件安装。该项目的成功取决于广泛的软件开发,该软件已经实现了精美的实时指向控制,并通过使用斑点消除来减轻静态斑点的影响来进一步改善对比度。新的电晕仪模式的首次亮相于2015年6月,已经有了很好的初步结果。随后的调试之夜,由VORTEX团队成员及其各自的科学计划与科学之夜交错进行。迄今为止,新功能和出色的结果激励了VORTEX团队和Keck科学指导委员会(KSSC)为2016B提供分担风险模式的新模式。

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