183 GHz水蒸汽辐射计ALMA的大气相位校正

B. Nikolic, R. Bolton, S. Graves, R. Hills, J. Richer
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引用次数: 66

摘要

ALMA面临的最大挑战之一是克服大气湍流造成的自然限制,以达到精确到10毫角秒的分辨率。实现这一目标的一个关键组成部分是在每台直径12米的望远镜上安装毫米波辐射计,用于观测183千兆赫的大气水蒸汽线发射。从这些辐射计获得的信息可以用来计算每台望远镜瞄准线上总水蒸气的波动,并由此计算到每台天线的有效路径的波动。然后将路径波动的估计用于相位旋转记录的可见度,从而大大提高相干性。本文简要回顾了辐射计的设计,描述了获得相位校正的软件处理步骤,并展示了智利ALMA站点的一些初步结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Atmospheric phase correction for ALMA with 183 GHz water vapour radiometers
One of the great challenges for ALMA is overcoming the natural limits set by the turbulence in the atmosphere to achieve resolutions as fine as ten milli-arcseconds. A critical component in the strategy to achieve this are mm-wave radiometers on each of the 12 m diameter telescopes that observe the emission from the atmospheric water vapour line at 183 GHz. The information from these radiometers can be used to compute the fluctuations in total water vapour along the line of sight of each telescope, and from this, the fluctuation in effective path to each antenna. The estimates of path fluctuations are then used to phase-rotate recorded visibilities leading to much increased coherence. In this paper we briefly review the design of the radiometers, describe the software processing steps to derive phase corrections and show some of the first results from the ALMA site in Chile.
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