论文标题

ESO-NTT望远镜Sox的UV-VIS检测器系统的开发状态

Development status of the UV-VIS detector system of SOXS for the ESO-NTT telescope

论文作者

Cosentino, Rosario, Hernandez, Marcos, Ventura, Hector, Campana, Sergio, Claudi, Riccardo, Schipani, Pietro, Aliverti, Matteo, Baruffolo, Andrea, Ami, Sagi Ben, Biondi, Federico, Capasso, Giulio, D'Alessio, Francesco, D'Avanzo, Paolo, Hershko, Ofir, Kuncarayakti, Hanindyo, Landoni, Marco, Munari, Matteo, Pignata, Giuliano, Rubin, Adam, Scuderi, Salvatore, Vitali, Fabrizio, Young, David, Achren, Jani, Duran, Jose Antonio Araiza, Arcavi, Iair, Brucallassi, Anna, Bruch, Rachel, Cappellaro, Enrico, Colapietro, Mirko, Della Valle, Massimo, De Pascale, Marco, Di Benedetto, Rosario, D'Orsi, Sergio, Yam, Avishay Gal, Genoni, Matteo, Kotilainen, Jari, Causi, Gianluca Li, Mattila, Seppo, Rappaport, Michael, Radhakrishnan, Kalyan, Ricci, Davide, Riva, Marco, Salasnich, Bernardo, Smartt, Stephen, Sanchez, Ricardo Zanmar, Stritzinger, Maximilian, Accardo, Matteo, Mehrgan, Leander H., Ives, Derek, Hopgood, Josh

论文摘要

SOX将成为ESO NTT望远镜的新光谱设施,可以使用两个不同的臂:UV-VIS(350-850 nm)和NIR(800-2000 nm)覆盖光学带和NIR频段。在本文中,我们描述了可见的相机低温恒温器的开发状态,采集系统的结构以及电子设计的进度。 UV-VIS检测器系统基于来自E2V的CCD检测器44-82,它是一个定制检测器头,再加上ESO连续流冷冻剂(CFC),一种基于可编程逻辑控制器(PLC)的自定义冷却系统,以及ESO开发的新通用控制器(NGC)。本文概述了系统的开发状态,描述了构成UV-VIS臂的不同部分的设计,并伴随着一系列描述机械和电子部件中Soxs设计解决方案的信息。将显示带有UV-VIS相机的检测系统的第一个测试。

SOXS will be the new spectroscopic facility for the ESO NTT telescope able to cover the optical and NIR bands by using two different arms: the UV-VIS (350-850 nm), and the NIR (800-2000 nm). In this article, we describe the development status of the visible camera cryostat, the architecture of the acquisition system and the progress in the electronic design. The UV-VIS detector system is based on a CCD detector 44-82 from e2v, a custom detector head, coupled with the ESO continuous flow cryostats (CFC), a custom cooling system, based on a Programmable Logic Controller (PLC), and the New General Controller (NGC) developed by ESO. This paper outlines the development status of the system, describes the design of the different parts that make up the UV-VIS arm and is accompanied by a series of information describing the SOXS design solutions in the mechanics and in the electronics parts. The first tests of the detector system with the UV-VIS camera will be shown.

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