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A CSO SubmiSlimeter Active Optics System

机译:CSO Immislimeter主动光学系统

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Active surface correction of the Caltech Submillimeter Observatory (CSO) primary mirror has been accomplished. The Dish Surface Optimization System (DSOS) has been designed and built to operate at the CSO, on Mauna Kea, Hawaii. The DSOS is the only active optics system of its kind in the world. There are 99 steel rod standoffs that interface the dish panels to its backing structure. Each standoff is now fitted with a heating/cooling assembly. Applying a controlled potential to each of the 99 assemblies adjusts the surface of the dish. Heating elongates and cooling shortens the standoffs, providing the push or pull on the primary's panel surface. The needed correction for each standoff, for a given elevation, is determined from prior holography measurements of the dish surface. Without the DSOS the optimum surface accuracy was 25-|am RMS, yielding a beam efficiency of 33% at the 350-u.m-wavelength range. With the DSOS on, this has been improved to 10-um RMS. The best beam efficiency obtained is 56%, with an average beam efficiency of 53%. The DSOS has been in operation on the CSO since February 2003. Observers using the SHARCII (a 384 pixel submillimeter high angular resolution camera) and the 850 GHz heterodyne receiver, have been able to detect new weak and/or distant objects including detection of an earth-massed planet in Fomalhaut with the help of this unique active optics system.
机译:已经完成了CALTECH Sublimimeter天文台(CSO)主镜的主动表面校正。 Dish Surface Optimization System(DSOS)已设计和建造,以在夏威夷Mauna Kea的CSO上运营。 DSO是世界上唯一的主动光学系统。有99个钢棒支座,将洗碗盘连接到其背衬结构。现在,每个支座都配有加热/冷却组件。向99个组件中的每一个应用控制电位调节盘的表面。加热细长和冷却缩短了支架,在主要的面板表面上提供推或拉动。对于给定仰角的每个支架的所需校正由盘表面的先前全息测量确定。在没有DSO的情况下,最佳表面精度为25- | RMS,在350-U.m-波长范围内产生33%的光束效率。随着DSO的情况下,这已得到改善为10-UM RMS。获得的最佳光束效率为56%,平均光束效率为53%。自2003年2月以来,DSO已经在CSO上运行。使用SHARCII(384像素杂交计高角度分辨率相机)和850GHz外差接收器的观察者能够检测新的弱和/或远处物体,包括检测在Fomalhaut的地球群地球在这种独特的主动光学系统的帮助下。

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