首页> 外文期刊>Astronomy and astrophysics >Probabilistic fibre-to-target assignment algorithm for multi-object spectroscopic surveys
【24h】

Probabilistic fibre-to-target assignment algorithm for multi-object spectroscopic surveys

机译:多对象光谱调查的概率纤维到目标分配算法

获取原文
获取外文期刊封面目录资料

摘要

Context. Several new multi-object spectrographs are currently planned or under construction that are capable of observing thousands of Galactic and extragalactic objects simultaneously. Aims. In this paper we present a probabilistic fibre-to-target assignment algorithm that takes spectrograph targeting constraints into account and is capable of dealing with multiple concurrent surveys. We present this algorithm using the 4-m Multi-Object Spectroscopic Telescope (4MOST) as an example. Methods. The key idea of the proposed algorithm is to assign probabilities to fibre-target pairs. The assignment of probabilities takes the fibre positioner’s capabilities and constraints into account. Additionally, these probabilities include requirements from surveys and take the required exposure time, number density variation, and angular clustering of targets across each survey into account. The main advantage of a probabilistic approach is that it allows for accurate and easy computation of the target selection function for the different surveys, which involves determining the probability of observing a target, given an input catalogue. Results. The probabilistic fibre-to-target assignment allows us to achieve maximally uniform completeness within a single field of view. The proposed algorithm maximises the fraction of successfully observed targets whilst minimising the selection bias as a function of exposure time. In the case of several concurrent surveys, the algorithm maximally satisfies the scientific requirements of each survey and no specific survey is penalised or prioritised. Conclusions. The algorithm presented is a proposed solution for the 4MOST project that allows for an unbiased targeting of many simultaneous surveys. With some modifications, the algorithm may also be applied to other multi-object spectroscopic surveys.
机译:语境。目前有几种新的多物体光谱仪或正在建造的,能够同时观察成千上万的银河系和紫外物体。目标。在本文中,我们介绍了一个概率的光纤到目标分配算法,该分配算法考虑了瞄准限制,并且能够处理多个并发调查。我们使用4M多物体光谱望远镜(最终)作为示例来提出该算法。方法。所提出的算法的关键思想是将概率分配给光纤目标对。概率的分配将光纤定位器的能力和约束考虑在内。此外,这些概率包括来自调查的要求,并考虑到每个调查的所需曝光时间,数量浓度变化和角度聚类。概率方法的主要优点是它允许准确且容易地计算不同调查的目标选择功能,这涉及给定输入目录的观察目标的概率。结果。概率纤维到目标分配允许我们在单个视野中实现最大均匀的完整性。所提出的算法最大限度地提高了成功观察到的目标的分数,而作为曝光时间的函数最小化选择偏差。在几种并发调查的情况下,该算法最大限度地满足每个调查的科学要求,并且没有特定的调查受到处罚或优先考虑的。结论。所呈现的算法是最重要的项目的提议解决方案,其允许对许多同时调查的无偏见的靶向。通过一些修改,该算法也可以应用于其他多对象光谱调查。

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