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Fast multichannel astronomical photometer based on silicon photo multipliers mounted at the Telescopio Nazionale Galileo

机译:基于Telescopio Nazionale Galileo上安装的硅光电倍增器的快速多通道天文光度计

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The realization of low-cost instruments with high technical performance is a goal that deserves efforts in an epoch of fast technological developments. Such instruments can be easily reproduced and therefore allow new research programs to be opened in several observatories. We realized a fast optical photometer based on the SiPM (Silicon Photo Multiplier) technology, using commercially available modules. Using low-cost components, we developed a custom electronic chain to extract the signal produced by a commercial MPPC (Multi Pixel Photon Counter) module produced by Hamamatsu Photonics to obtain sub-millisecond sampling of the light curve of astronomical sources (typically pulsars). We built a compact mechanical interface to mount the MPPC at the focal plane of the TNG (Telescopio Nazionale Galileo), using the space available for the slits of the LRS (Low Resolution Spectrograph). On February 2014 we observed the Crab pulsar with the TNG with our prototype photometer, deriving its period and the shape of its light curve, in very good agreement with the results obtained in the past with other much more expensive instruments. After the successful run at the telescope we describe here the lessons learned and the ideas that burst to optimize this instrument and make it more versatile.
机译:实现具有高技术性能的低成本仪器是在快速技术发展的时代中应付出的努力的目标。这样的仪器很容易复制,因此可以在几个观测站中打开新的研究程序。我们使用市售模块实现了基于SiPM(硅光电倍增管)技术的快速光学光度计。我们使用低成本组件开发了一条定制的电子链,以提取由Hamamatsu Photonics生产的商用MPPC(多像素光子计数器)模块产生的信号,以获取毫秒级的天文光源(通常是脉冲星)的光曲线采样。我们使用LRS(低分辨率光谱仪)狭缝的可用空间,构建了一个紧凑的机械接口,将MPPC安装在TNG(Telescopio Nazionale Galileo)的焦平面上。 2014年2月,我们用原型光度计观察了带有TNG的Crab脉冲星,推导了其周期和光曲线形状,与过去使用其他更昂贵的仪器获得的结果非常吻合。在望远镜成功运行之后,我们在这里描述所学到的经验教训以及为优化此仪器并使之变得更加通用而爆发的想法。

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