The large area detector onboard the eXTP mission
Date Issued
2022
Author(s)
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Ambrosi, Giovanni
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Antonelli, Matias
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Babinec, Viktor
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Bayer, Joerg
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Bertucci, Bruna
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Bertuccio, Giuseppe
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Bi, Xingzi
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Boezio, Mirko
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Bonvicini, Walter
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Borghi, Giacomo
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BOZZO , ENRICO
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Bouyjou, Florent
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Cadoux, Franck
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Cao, Jiewei
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Cavazzuti, Elisabetta
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Chen, Tianxiang
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Chen, Wen
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Cirrincione, Daniela
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Dohnal, Roman
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Donnarumma, Immacolata
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Fan, Qingmei
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Favre, Yannick
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Fiandrini, Emanuele
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Ficorella, Francesco
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Gao, Na
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Gevin, Olivier
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Grassi, Marco
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Guedel, Manuel
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Han, Xingbo
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He, Huilin
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Hedderman, Paul
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den Herder, Jan-Willem
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Hynek, Richard
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Hong, Bin
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Jin, Ge
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Kole, Merlin
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Karas, Vladimir
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Komarek, Martin
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Li, Loghui
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Li, Tianming
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Liang, Hong
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Limousin, Olivier
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Liu, Rui
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Lohering, Jens
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Lu, Fang-Jun
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Luo, Tao
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Malcovati, Piero
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Mao, Hanqi
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Marinucci, Andrea
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Mele, Filippo
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Merkl, Martin
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Meuris, Aline
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Michalska, Malgorzata
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Munini, Riccardo
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Mussolin, Lorenzo
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Negri, Barbara
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Novák, Petr
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Nowosielski, Witold
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Orleanski, Piotr
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Ottensamer, Roland
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Paltani, Stephane
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Pan, Teng
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Pepponi, Giancarlo
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Perinati, Emanuele
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Picciotto, Antonino
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Pliego, Samuel
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Rachevski, Alexandre
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Rashevskaia, Irina
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Santangelo, Andrea
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Schanne, Stéphane
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Skup, Konrad
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Sveda, Libor
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Svoboda, Jiri
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Tenzer, Chris
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Torok, Gabriel
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Vacchi, Andrea
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Xiong, Hao
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Wang, Jian
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Wang, Xianqi
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Winter, Berend
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Wu, Xin
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Xu, Yupeng
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Zampa, Ganluigi
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Zampa, Nicola
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Zdziarski, Andrzej A.
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Zhang, Long
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Zhang, Shu
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Zhang, Shuang-Nan
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Zhang, Wenda
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Zhang, Xiaoli
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Zhang, Zhen
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Zhou, Yupeng
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Zorzi, Nicola
Abstract
The Large Area Detector (LAD) is the high-throughput, spectral-timing instrument onboard the eXTP mission, a flagship mission of the Chinese Academy of Sciences and the China National Space Administration, with a large European participation coordinated by Italy and Spain. The eXTP mission is currently performing its phase B study, with a target launch at the end-2027. The eXTP scientific payload includes four instruments (SFA, PFA, LAD and WFM) offering unprecedented simultaneous wide-band X-ray timing and polarimetry sensitivity. The LAD instrument is based on the design originally proposed for the LOFT mission. It envisages a deployed 3.2 m2 effective area in the 2-30 keV energy range, achieved through the technology of the large-area Silicon Drift Detectors - offering a spectral resolution of up to 200 eV FWHM at 6 keV - and of capillary plate collimators - limiting the field of view to about 1 degree. In this paper we will provide an overview of the LAD instrument design, its current status of development and anticipated performance.
Coverage
Space Telescopes and Instrumentation 2022: Ultraviolet to Gamma Ray
All editors
den Herder, Jan-Willem A.; Nikzad, Shouleh;Nakazawa, Kazuhiro
Series
Volume
12181
Start page
121811X
Conferenece
Space Telescopes and Instrumentation 2022: Ultraviolet to Gamma Ray
Conferenece place
Montréal, Québec, Canada
Conferenece date
17-23 July, 2022
Issn Identifier
0277-786X
Ads BibCode
2022SPIE12181E..1XF
Rights
open.access
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