IF 1.1 4区 物理与天体物理 Q3 ASTRONOMY & ASTROPHYSICS
I. A. Komarova, A. M. Tatarnikov, A. V. Sharonova, A. A. Belinskii, N. A. Maslennikova, N. P. Ikonnikova, M. A. Burlak
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引用次数: 0

摘要

本文分析了2019-2014年在可见光和近红外范围内对CMO SAI MSU上空夜空亮度的测量结果。2023-2024年,无月夜空1 arcsec\({}^{2}\) 的天顶亮度中值在\(B\)波段为\(21.31^{m}\),在\(20.63^{m}()在(V)波段,(20.15^{m}()在(R_{c}()波段,(19.11^{m}()在(I_{c}()波段。5年内,天空亮度在(B)和(V)波段增加了(0.7^{m}\),在(R_{c})波段增加了(0.45^{m}\),在(I_{c})波段增加了({/sim}0.1^{m}\)。我们发现,亮度增长的大部分原因(最多达到)是由于附近城市光污染的增加,而其余原因则是由于 2019 年最低点之后太阳活动的增加。我们讨论了天空亮度如何受空气质量、太阳和月球在天空中的位置等因素的影响。对天空发射光谱的定性分析表明,LED 灯在光污染中的作用越来越大。天空亮度的这些变化只会变得更加困难,这有利于对光污染程度不太敏感的观测--红外测光和光谱以及高分辨率光学光谱。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

The \(\boldsymbol{BVR_{c}I_{c}}\) Sky Brightness of the Caucasian Mountain Observatory of MSU

The \(\boldsymbol{BVR_{c}I_{c}}\) Sky Brightness of the Caucasian Mountain Observatory of MSU

In this paper we analyse the measurements of the brightness of the night sky above the CMO SAI MSU in the visible and near-infrared range made in 2019–2014. In 2023–2024 the median zenith brightness of 1 arcsec\({}^{2}\) of the moonless night sky was \(21.31^{m}\) in the \(B\) band, \(20.63^{m}\) in the \(V\) band, \(20.15^{m}\) in the \(R_{c}\) band, and \(19.11^{m}\) in the \(I_{c}\) band. In 5 years the sky brightness had increased by \(0.7^{m}\) in \(B\) and \(V\), by \(0.45^{m}\) in \(R_{c}\), and \({\sim}0.1^{m}\) in \(I_{c}\). We found that the brightness growth is mostly (up to \({\sim}85\%\)) due to the increasing light pollution from nearby cities, while the remainder can be attributed to the increase of solar activity after the 2019 minimum. We discuss how the sky brightness is influenced by such factors as the airmass and the location of the Sun and the Moon in the sky. A qualitative analysis of the sky emission spectrum has demonstrated the growing role of LED lamps in light pollution. These changes in sky brightness which are only going to get harder favour observations that are less sensitive to the degree of light pollution—IR photometry and spectroscopy and high-resolution optical spectroscopy.

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来源期刊
CiteScore
1.70
自引率
22.20%
发文量
0
审稿时长
6-12 weeks
期刊介绍: Astronomy Letters is an international peer reviewed journal that publishes the results of original research on all aspects of modern astronomy and astrophysics including high energy astrophysics, cosmology, space astronomy, theoretical astrophysics, radio astronomy, extragalactic astronomy, stellar astronomy, and investigation of the Solar system.
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