SOXS end-to-end simulator: development and applications for pipeline design

SOXS end-to-end simulator: development and applications for pipeline design
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SOXS 端到端模拟器:管道设计的开发和应用

DOI:
10.1117/12.2560640
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发表时间:
2020
期刊:
--
影响因子:
--
通讯作者:
Genoni M
Genoni M
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--
文献类型:
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作者:
Genoni M

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我们提出了在ESO-NTT 3.5米望远镜的SOXS仪器的端到端模拟器的发展。SOXS将是一个光谱设施,由双臂高效率光谱仪制成,能够覆盖350-2000 nm的光谱范围,分辨率为R = 4500。E2 E模型允许模拟光子从感兴趣的科学目标开始到探测器的传播。模拟器的输出是合成帧,主要用于优化管道开发,并可能有助于在实验室和望远镜中进行适当的对准和集成阶段。在本文中,我们将详细的模拟器的体系结构和计算模型,这是强烈的特点是模块化和灵活性。合成光谱格式,有关不同的看到和观察条件,和校准帧摄取的管道。
We present the development of the End-to-End simulator for the SOXS instrument at the ESO-NTT 3.5-m telescope. SOXS will be a spectroscopic facility, made by two arms high efficiency spectrographs, able to cover the spectral range 350-2000 nm with resolving power R≈4500. The E2E model allows to simulate the propagation of photons starting from the scientific target of interest up to the detectors. The outputs of the simulator are synthetic frames, which will be mainly exploited for optimizing the pipeline development and possibly assisting for proper alignment and integration phases in laboratory and at the telescope. In this paper, we will detail the architecture of the simulator and the computational model, which are strongly characterized by modularity and flexibility. Synthetic spectral formats, related to different seeing and observing conditions, and calibration frames to be ingested by the pipeline are also presented.
ESO NTT SOXS 摄谱仪的光学设计
DOI: 10.1117/12.2311320
发表时间: 2018
期刊: Ground-based and Airborne Instrumentation for Astronomy VIII
影响因子: --
作者:
R. Zanmar Sanchez;M. Munari;A. Rubin;S. Ben Ami;A. Brucalassi;H. Kuncarayakti;J. Achrén;S. Campana;R. Claudi;P. Schipani;M. Aliverti;A. Baruffolo;F. Biondi;G. Capasso;R. Cosentino;F. D'Alessio;P. D’Avanzo;S. Scuderi;F. Vitali;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;O. Hershko;M. Hirvonen;J. Kotilainen;T. Kumar;M. Landoni;J. Lehti;G. Li Causi;L. Marafatto;S. Mattila;G. Pariani;G. Pignata;M. Rappaport;D. Ricci;M. Riva;B. Salasnich;S. Smartt;M. Turatto
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发表时间: 2018
期刊: --
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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
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DOI: 10.1117/12.2312539
发表时间: 2018
期刊: Ground-based and Airborne Instrumentation for Astronomy VIII
影响因子: --
作者:
R. Cosentino;M. Aliverti;S. Scuderi;S. Campana;R. Claudi;P. Schipani;A. Baruffolo;S. Ben;L. Mehrgan;D. Ives;F. Biondi;A. Brucalassi;G. Capasso;F. D'Alessio;P. D’Avanzo;O. Diner;H. Kuncarayakti;M. Munari;A. Rubin;F. Vitali;J. Achrén;J. A. Araiza;I. Arcavi;A. Bianco;E. Cappellaro;M. Colapietro;M. Della Valle;S. D'orsi;D. Fantinel;J. Fynbo;A. Gal;M. Genoni;M. Hirvonen;J. Kotilainen;T. Kumar;M. Landoni;J. Lehti;G. Li Causi;L. Marafatto;S. Mattila;G. Pariani;G. Pignata;M. Rappaport;D. Ricci;M. Riva;B. Salasnich;R. Zanmar Sanchez;S. Smartt;M. Turatto
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DOI: 10.1117/12.2561015
发表时间: 2020
影响因子: 3.6
作者:
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通讯作者: Héctor Ventura