论文标题

仪器的调试和改进以及对Antola Park区域天文天文台OARPAF的科学开发的启动和推出

Commissioning and improvements of the instrumentation and launch of the scientific exploitation of OARPAF, the Regional Astronomical Observatory of the Antola Park

论文作者

Ricci, Davide, Tosi, Silvano, Cabona, Lorenzo, Righi, Chiara, La Camera, Andrea, Marini, Anna, Domi, Alba, Santostefano, Matteo, Balbi, Evandro, Ancona, Massimo, Boccacci, Patrizia, Bracco, Gianangelo, Cardinale, Roberta, Dellacasa, Andrea, Landoni, Marco, Pallavicini, Marco, Petrolini, Alessandro, Schiavi, Carlo, Zappatore, Sandro, Zerbi, Filippo Maria

论文摘要

\ oarpaf望远镜是$ 80 \ rm cm $ - 直径的光学望远镜,该光学望远镜安装在意大利北部的安托拉山区区域储备中。这项工作介绍了该网站表征的结果,以及已实施的发展和干预措施,目的是利用该设施以进行科学和教育目的。 在该网站的表征期间,平均背景亮度为$ 22.40 \,m_ {ab} $($ b $ filter) - $ 21.14 \,m_ {ab} $($ i $),每台平方和$ 1.5 $ - $ 3.0 $ 3.0” $ see,已被衡量。 调试下的材料包括3个CCD检测器,我们为其提供线性范围,增益和黑暗电流; 31订单échelle 意大利北部。这项工作介绍了网站表征的结果,以及$ r \ sim 8500 $ - $ 15000 $的开发和光谱仪,以及$ n = 1.39 \ times 10^{ - 6} \ rm px^{ - rm px^{ - 1}λ+ 1.45λ+ 1.45 \ \ 1.45 \ \ $ $ $ $ $ $ $ nm $。 该设施的科学和外展潜力在不同的科学案例中得到了证明,例如超球星的转移和主动银河核变异性。还将确定重力镜头类星体的时间延迟,微透明现象以及小行星的跟踪和研究也被讨论为前瞻性科学案例。

The \oarpaf telescope is an $80\rm cm$-diameter optical telescope installed in the Antola Mount Regional Reserve, in Northern Italy. This work presents the results of the characterization of the site, as well as developments and interventions that have been implemented, with the goal of exploiting the facility for scientific and educational purposes. During the characterization of the site, an average background brightness of $22.40 \, m_{AB}$ ($B$ filter) -- $21.14 \, m_{AB}$ ($I$) per arcsecond squared, and a $1.5$--$3.0"$ seeing, have been measured. An estimate of the magnitude zero points for photometry is also reported. The material under commissioning includes 3 CCD detectors for which we provide the linearity range, gain, and dark current; a 31 orders échelle Northern Italy. This work presents the results of the characterization of the site, as well as developments andspectrograph with $R\sim 8500$--$15000$, and a dispersion of $n = 1.39\times 10^{-6}\rm px^{-1}λ+ 1.45\times 10^{-4}\rm nm/px$, where $λ$ is expressed in $\rm nm$. The scientific and outreach potential of the facility is proven in different science cases, such as exoplanetary transits and active galactic nuclei variability. The determination of time delays of gravitationally lensed quasars, the microlensing phenomenon and the tracking and the study of asteroids are also discussed as prospective science cases.

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