首页> 外文会议>Conference on adaptive optics systems >Adaptive Optics at the Subaru Telescope: current capabilities and development
【24h】

Adaptive Optics at the Subaru Telescope: current capabilities and development

机译:斯巴鲁望远镜的自适应光学:当前的功能和发展

获取原文

摘要

Adaptive optics is a key component of Subaru Telescope's current and future observational capabilities. Current AO observations rely heavily on the AO188 instrument, a 188-elements system that can operate in natural or laser guide star (LGS) mode, and delivers diffraction-limited images in near-IR. In its LGS mode, laser light is transported from the solid state laser to the launch telescope by a single mode fiber. AO188 can feed several instruments: the infrared camera and spectrograph (IRCS), a high contrast imaging instrument (HiCIAO) or an optical integral field spectrograph (Kyoto-3DII). Adaptive optics development in support of exoplanet observations has been and continues to be very active. The Subaru Coronagraphic Extreme-AO (SCExAO) system, which combines extreme-AO correction with advanced coronagraphy, is in the commissioning phase, and will greatly increase Subaru Telescope's ability to image and study exoplanets. SCExAO currently feeds light to HiCIAO, and will soon be combined with the CHARIS integral field spectrograph and the fast frame MKIDs exoplanet camera, which have both been specifically designed for high contrast imaging. SCExAO also feeds two visible-light single pupil interferometers: VAMPIRES and FIRST. In parallel to these direct imaging activities, a near-IR high precision spectrograph (IRD) is under development for observing exoplanets with the radial velocity technique. Wide-field adaptive optics techniques are also being pursued. The RAVEN multi-object adaptive optics instrument was installed on Subaru telescope in early 2014. Subaru Telescope is also planning wide field imaging with ground-layer AO with the ULTIMATE-Subaru project.
机译:自适应光学器件是斯巴鲁望远镜当前和未来观察能力的关键组成部分。当前的AO观测严重依赖于AO188仪器,该仪器是188个元素的系统,可以在自然或激光制导星(LGS)模式下运行,并在近红外范围内提供衍射受限的图像。在LGS模式下,激光通过单模光纤从固态激光器传输到发射望远镜。 AO188可以提供多种仪器:红外照相机和光谱仪(IRCS),高对比度成像仪器(HiCIAO)或光学积分场光谱仪(Kyoto-3DII)。支持系外行星观测的自适应光学技术一直非常活跃。斯巴鲁日冕极端AO(SCExAO)系统将极限AO校正与高级日冕相结合,处于调试阶段,它将大大提高斯巴鲁望远镜成像和研究系外行星的能力。 SCExAO目前为HiCIAO提供照明,不久将与CHARIS积分场光谱仪和快速帧MKIDs系外行星相机结合使用,这两种相机都是专门为高对比度成像而设计的。 SCExAO还提供了两个可见光单瞳干涉仪:VAMPIRES和FIRST。与这些直接成像活动并行的是,正在开发一种近红外高精度光谱仪(IRD),以利用径向速度技术观测系外行星。广域自适应光学技术也正在被追求。 RAVEN多目标自适应光学仪器于2014年初安装在斯巴鲁望远镜上。斯巴鲁望远镜还计划通过ULTIMATE-Subaru项目使用地层AO进行宽视场成像。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号