Operational modes and efficiency of SOXS

Operational modes and efficiency of SOXS
复制标题

SOXS 的运作模式和效率

DOI:
10.1117/12.2562321
复制
发表时间:
2020
期刊:
--
影响因子:
--
通讯作者:
Claudi R
Claudi R
中科院分区:
--
文献类型:
--
作者:
Claudi R

文献摘要

参考文献

被引文献

相似文献

Son of X-Shooter(SOXS)将是一台高效的光谱仪,在整个波段上的平均分辨率狭缝积约为4500,能够同时观察350-2000 nm的整个光谱范围。它由三个科学臂(紫外-可见光谱仪,近红外光谱仪和采集相机)组成,通过公共路径系统连接到NTT和校准单元。公共路径是仪器的支柱,也是NTT Nasmyth聚焦法兰的接口。该仪器项目于2018年通过了最终设计评审,目前处于组装、集成和测试(AIT)阶段。本文概述了SOXS的观测模式和各子系统的效率,并介绍了对其进行评价的实验室试验方案。
Son of X-Shooter (SOXS) will be a high-efficiency spectrograph with a mean Resolution-Slit product of ~4500 over the entire band capable of simultaneously observing the complete spectral range 350-2000 nm. It consists of three scientific arms (the UV-VIS Spectrograph, the NIR Spectrograph, and the Acquisition Camera) connected by the Common Path system to the NTT, and the Calibration Unit. The Common Path is the backbone of the instrument and the interface to the NTT Nasmyth focus flange. The instrument project went through the Final Design Review in 2018 and is currently in Assembly Integration and test (AIT) Phase. This paper outlines the observing modes of SOXS and the efficiency of each subsystem and the laboratory test plan to evaluate it.
DOI: 10.1117/12.2560653
发表时间: 2020
期刊: Ground-based and Airborne Instrumentation for Astronomy VIII
影响因子: --
作者:
Davide Ricci;A. Baruffolo;B. Salasnich;M. D. Pascale;S. Campana;R. Claudi;P. Schipani;M. Aliverti;S. Ben;F. Biondi;G. Capasso;R. Cosentino;F. D'Alessio;P. D’Avanzo;O. Hershko;H. Kuncarayakti;M. Landoni;M. Munari;G. Pignata;K. Radhakrishnan;A. Rubin;S. Scuderi;F. Vitali;D. Young;J. Achr'en;J. A. Araiza;I. Arcavi;A. Brucalassi;R. Bruch;E. Cappellaro;M. Colapietro;M. Valle;R. D. Benedetto;S. D'orsi;A. Gal;M. Genoni;M. Hernandez;J. Kotilainen;G. Causi;S. Mattila;M. Rappaport;M. Riva;S. Smartt;R. Z. Sánchez;M. Stritzinger;Héctor Ventura
通讯作者: Héctor Ventura
SOXS(X-Shooter之子)的共同路径
DOI: 10.1117/12.2314576
发表时间: 2018
期刊: --
影响因子: --
作者:
Hershko O
通讯作者: Hershko O
SOXS 捕获和制导系统的最终设计和开发状况
DOI: 10.1117/12.2561802
发表时间: 2020
期刊: --
影响因子: --
作者:
Brucalassi A
通讯作者: Brucalassi A
DOI: 10.1117/12.2560951
发表时间: 2020
期刊: Ground-based and Airborne Instrumentation for Astronomy VIII
影响因子: --
作者:
H. Kuncarayakti;J. Achrén;S. Campana;R. Claudi;P. Schipani;M. Aliverti;A. Baruffolo;S. Ben;F. Biondi;G. Capasso;R. Cosentino;F. D'Alessio;P. D’Avanzo;O. Hershko;M. Landoni;M. Munari;G. Pignata;A. Rubin;S. Scuderi;F. Vitali;D. Young;J. A. Araiza;I. Arcavi;A. Brucalassi;R. Bruch;E. Cappellaro;M. Colapietro;M. Valle;M. D. Pascale;R. D. Benedetto;S. D'orsi;A. Gal;M. Genoni;M. Hernandez;J. Kotilainen;G. Causi;S. Mattila;K. Radhakrishnan;M. Rappaport;Davide Ricci;M. Riva;B. Salasnich;S. Smartt;R. Z. Sánchez;M. Stritzinger;Héctor Ventura
通讯作者: Héctor Ventura
DOI: 10.1117/12.2313944
发表时间: 2018
期刊: Ground-based and Airborne Instrumentation for Astronomy VIII
影响因子: --
作者:
F. Biondi;R. Claudi;L. Marafatto;J. Farinato;D. Magrin;R. Ragazzoni;S. Campana;P. Schipani;M. Aliverti;A. Baruffolo;S. Ben;A. Brucalassi;G. Capasso;R. Cosentino;F. D'Alessio;P. D’Avanzo;O. Hershko;H. Kuncarayakti;M. Munari;A. Rubin;S. Scuderi;F. Vitali;J. Achrén;J. A. Araiza;I. Arcavi;A. Bianco;E. Cappellaro;M. Colapietro;M. Della Valle;O. Diner;S. D'orsi;D. Fantinel;J. Fynbo;A. Gal;M. Genoni;M. Hirvonen;J. Kotilainen;T. Kumar;M. Landoni;J. Lehti;G. Li Causi;S. Mattila;G. Pariani;G. Pignata;M. Rappaport;M. Riva;D. Ricci;B. Salasnich;R. Zanmar Sanchez;S. Smartt;M. Turatto
通讯作者: M. Turatto