论文标题

直接评估安装在户外安装的SQM传感器的灵敏度漂移

Direct assessment of the sensitivity drift of SQM sensors installed outdoors

论文作者

Bará, Salvador, Marco, Enric, Ribas, Salvador J., Gil, Manuel Garcia, de Miguel, Alejandro Sánchez, Zamorano, Jaime

论文摘要

长期监测人造夜空亮度的演变是制定科学知识的公共政策并评估缓解光污染措施的功效的关键工具。检测基本的人造亮度趋势是一项艰巨的任务,因为典型的夜空亮度信号显示出较大的变异性,特征时间尺度范围从几秒钟到几年不等。为了有效地隔离感兴趣效应的弱特征,确定辐射感应系统的潜在长期漂移至关重要。如果可以充分表征这些漂移,则可以轻松校正原始测量结果,并转换为一致的尺度。在此简短说明中,我们报告了属于几个监视网络的SQM检测器记录的信号的逐渐变黑,该探测器在户外永久安装了从几个月到几年。灵敏度漂移是通过使用相同类型的参考探测器在开始时很少或根本不暴露于间隔时间在评估期间进行的平行测量来估计的。我们的初步结果表明,SQM检测器在户外安装的SQM检测器以平均速度为+0.034 magsqm/arcsec^2每MW/m^2的平均速率暴露于太阳能水平全球辐照度中,对于我们的位置而言,这将转化为+0.05.05 to +0.05 to +0.06 magsqm/arcsecsecsecsecsecsecsecsecsec^2 per arcsec^2年。

Long-term monitoring of the evolution of the artificial night sky brightness is a key tool for developing science-informed public policies and assessing the efficacy of light pollution mitigation measures. Detecting the underlying artificial brightness trend is a challenging task, since the typical night sky brightness signal shows a large variability with characteristic time scales ranging from seconds to years. In order to effectively isolate the weak signature of the effect of interest, determining the potential long term drifts of the radiance sensing systems is crucial. If these drifts can be adequately characterized, the raw measurements could be easily corrected for them and transformed to a consistent scale. In this short note we report on the progressive darkening of the signal recorded by SQM detectors belonging to several monitoring networks, permanently installed outdoors for periods ranging from several months to several years. The sensitivity drifts were estimated by means of parallel measurements made at the beginning and at the end of the evaluation periods using reference detectors of the same kind that were little or no exposed to weathering in the intervening time. Our preliminary results suggest that SQM detectors installed outdoors steadily increase their readings at an average rate of +0.034 magSQM/arcsec^2 per MWh/m^2 of exposure to solar horizontal global irradiation, that for our locations translates into approximately +0.05 to +0.06 magSQM/arcsec^2 per year.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源