论文标题

在天文观测中保护夜空黑暗:线性系统方法

Protecting the night sky darkness in astronomical observatories: a linear systems approach

论文作者

Falchi, Fabio, Bará, Salvador

论文摘要

人造光的排放量的持续增加正在导致世界上大多数地区的夜空逐渐增强。这个过程对在光学范围内运行的基于地面天文学的科学和教育活动的长期可持续性构成了威胁。如果越来越多的光污染水平阻碍进行这些关键的科学基础设施的高层科学观察的能力,那么对建筑,设备和维护的建设,科学和技术劳动力,设备和维护的巨额投资可能会受到风险。此外,光污染具有其他负面后果,例如生物多样性危及娱乐,旅游和文化享受的星空丧失。传统的光污染方法基于对各个来源的光度法的施加条件,但是在法规中很少解决观测站周围地区所有来源的综合作用。我们建议,这种方法应与自上而下的,入学限制策略相辅相成,从而确定了明确的限制,以使夜空上方的夜空降低。我们描述了可以用于此目的的指标的一般形式,并开发了将其值与整个领土上的人工排放相关的线性模型。可以扩展这种方法以考虑其他保护需求,并且在更广泛的空间规划项目的背景下,预计它对于在公共照明方面做出明智的决定将很有用。

The sustained increase of emissions of artificial light is causing a progressive brightening of the night sky in most of the world. This process represents a threat for the long-term sustainability of the scientific and educational activity of ground-based astronomical observatories operating in the optical range. Huge investments in building, scientific and technical workforce, equipment and maintenance can be at risk if the increasing light pollution levels hinder the capability of carrying out the top-level scientific observations for which these key scientific infrastructures were built. In addition, light pollution has other negative consequences, as e.g. biodiversity endangering and the loss of the starry sky for recreational, touristic, and cultural enjoyment. The traditional light pollution mitigation approach is based on imposing conditions on the photometry of individual sources, but the aggregated effects of all sources in the territory surrounding the observatories are seldom addressed in the regulations. We propose that this approach shall be complemented with a top-down, inmission limits strategy, whereby clear limits are established to the admissible deterioration of the night sky above the observatories. We describe the general form of the indicators that can be employed to this end, and develop linear models relating their values to the artificial emissions across the territory. This approach can be extended to take into account for other protection needs, and it is expected to be useful for making informed decisions on public lighting, in the context of wider spatial planning projects.

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