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  5. The advanced Virgo longitudinal control system for the O2 observing run
 

The advanced Virgo longitudinal control system for the O2 observing run

Journal
ASTROPARTICLE PHYSICS  
Date Issued
2020
Author(s)
Acernese, F.
•
Agathos, M.
•
Aiello, L.
•
Allocca, A.
•
Aloy, M. A.
•
Amato, A.
•
Antier, S.
•
Arène, M.
•
Arnaud, N.
•
Ascenzi, S.  
•
Astone, P.
•
Del Pozzo, W.
•
De Pietri, R.
•
De Rosa, R.
•
De Rossi, C.
•
Dietrich, T.
•
Di Fiore, L.
•
Di Giorgio, C.
•
Di Giovanni, F.
•
Di Giovanni, M.
•
Di Girolamo, T.
•
Aubin, F.
•
Di Lieto, A.
•
Di Pace, S.
•
Di Palma, I.
•
Di Renzo, F.
•
Drago, M.
•
Ducoin, J. -G.
•
Durante, O.
•
Eisenmann, M.
•
Errico, L.  
•
Estevez, D.
•
Babak, S.
•
Fafone, V.
•
Farinon, S.
•
Feng, F.
•
Ferrante, I.
•
Fidecaro, F.
•
Fiori, I.
•
Fiorucci, D.
•
Fittipaldi, R.
•
Fiumara, V.
•
Flaminio, R.
•
Bacon, P.
•
Font, J. A.
•
Fournier, J. -D.
•
Frasca, S.
•
Frasconi, F.
•
Frey, V.
•
Fronzé, G.
•
Gammaitoni, L.
•
Garufi, F.
•
Gemme, G.
•
Genin, E.
•
Badaracco, F.
•
Gennai, A.
•
Ghosh, Archisman
•
Giacomazzo, B.
•
Gonzalez Castro, J. M.
•
Gosselin, M.
•
Gouaty, R.
•
GRADO, ANIELLO  
•
Granata, M.
•
Greco, G.
•
Grimaldi, A.
•
Bader, M. K. M.
•
Grimm, S. J.
•
Groot, P.
•
Gruning, P.
•
Guidi, G. M.
•
Guo, Y.
•
Gupta, P.
•
Halim, O.
•
Harder, T.
•
Harms, J.
•
Heidmann, A.
•
Baird, J.
•
Heitmann, H.
•
Hello, P.
•
Hemming, G.
•
Hinderer, T.
•
Hofman, D.
•
Huet, D.
•
Hui, V.
•
Idzkowski, B.
•
Iess, A.
•
Intini, G.
•
Baldaccini, F.
•
Isac, J. -M.
•
Jacqmin, T.
•
Jaranowski, P.
•
Jonker, R. J. G.
•
Katsanevas, S.
•
Kéfélian, F.
•
Khan, I.
•
Khetan, N.
•
Koekoek, G.
•
Koley, S.
•
Ballardin, G.
•
Królak, A.
•
Kutynia, A.
•
Laghi, D.
•
Lartaux-Vollard, A.
•
Lazzaro, C.
•
Leaci, P.
•
Leroy, N.
•
Letendre, N.
•
Linde, F.
•
Llorens-Monteagudo, M.
•
Barbieri, C.
•
Longo, A.
•
Lorenzini, M.
•
Loriette, V.
•
Losurdo, G.
•
Lumaca, D.
•
Macquet, A.
•
Majorana, E.
•
Maksimovic, I.
•
Man, N.
•
Mangano, V.  
•
Barone, F.
•
Mantovani, M.
•
MAPELLI, MICHELA  
•
Marchesoni, F.
•
Marion, F.
•
Marquina, A.
•
Marsat, S.
•
Martelli, F.
•
Martinez, V.
•
Masserot, A.
•
Mastrogiovanni, S.
•
Barsuglia, M.
•
Meidam, J.
•
Mejuto Villa, E.
•
Mereni, L.
•
Merzougui, M.
•
Messina, F.
•
Metzdorff, R.
•
Miani, A.
•
Michel, C.
•
Milano, L.
•
Miller, A.
•
Barta, D.
•
Minazzoli, O.
•
Minenkov, Y.
•
Montani, M.
•
Morawski, F.
•
Mours, B.
•
Muciaccia, F.
•
Nagar, A.
•
Nardecchia, I.
•
Naticchioni, L.
•
Neilson, J.
•
Basti, A.
•
Nelemans, G.
•
Nguyen, C.
•
Nichols, D.
•
Nissanke, S.
•
Nocera, F.
•
Obergaulinger, M.
•
Oganesyan, G.
•
Pagano, G.
•
Pagliaroli, G.
•
Palomba, C.
•
Bawaj, M.
•
Pang, P. T. H.
•
Pannarale, F.
•
Paoletti, F.
•
Paoli, A.
•
Pascucci, D.
•
Pasqualetti, A.
•
Passaquieti, R.
•
Passuello, D.
•
Patil, M.
•
Patricelli, B.
•
Bazzan, M.
•
Pedurand, R.
•
Perego, A.
•
Périgois, C.
•
Perreca, A.
•
Piccinni, O. J.
•
Pichot, M.
•
Piergiovanni, F.
•
Pierro, V.
•
Pillant, G.
•
Pinard, L.
•
Bejger, M.
•
Pinto, I. M.
•
Plastino, W.
•
Poggiani, R.
•
Popolizio, P.
•
Porter, E. K.
•
Prodi, G. A.
•
Punturo, M.
•
Puppo, P.
•
Raaijmakers, G.
•
Radulescu, N.
•
Belahcene, I.
•
Rapagnani, P.
•
Razzano, M.
•
Regimbau, T.
•
Rei, L.
•
Rettegno, P.
•
Ricci, F.
•
Riemenschneider, G.
•
Robinet, F.
•
Rocchi, A.
•
Rolland, L.
•
Bernuzzi, S.
•
Romanelli, M.
•
Romano, R.
•
Rosińska, D.
•
Ruggi, P.
•
Salafia, Om Sharan  
•
Salconi, L.
•
Samajdar, A.
•
Sanchis-Gual, N.
•
Santos, E.
•
Sassolas, B.
•
Bersanetti, D.
•
Sauter, O.
•
Schmidt, P.
•
Sentenac, D.
•
Sequino, V.
•
Sharma, A.
•
Sieniawska, M.
•
Singh, N.
•
Singhal, A.
•
Sorrentino, F.
•
Spera, M.
•
Bertolini, A.
•
Stachie, C.
•
Steer, D. A.
•
Stratta, G.  
•
Sur, A.
•
Swinkels, B. L.
•
Tacca, M.
•
Tiwari, S.
•
Tonelli, M.
•
Torres-Forné, A.
•
Travasso, F.
•
Bischi, M.
•
Tringali, M. C.
•
Trovato, A.
•
Trozzo, L.
•
Tsang, K. W.
•
Valentini, M.
•
van Bakel, N.
•
van Beuzekom, M.
•
van den Brand, J. F. J.
•
Van Den Broeck, C.
•
van der Schaaf, L.
•
Bitossi, M.
•
Vardaro, M.
•
Vasúth, M.
•
Vedovato, G.
•
Verkindt, D.
•
Vetrano, F.
•
Viceré, A.
•
Vinet, J. -Y.
•
Vocca, H.
•
Walet, R.
•
Was, M.
•
Bizouard, M. A.
•
Williamson, A. R.
•
Zadrożny, A.
•
Zelenova, T.
•
Zendri, J. -P.
•
Bloemen, S.
•
Bobba, F.
•
Boer, M.
•
Bogaert, G.
•
Bondu, F.
•
Bonnand, R.
•
Boom, B. A.
•
Boschi, V.
•
Bouffanais, Y.
•
Bozzi, A.
•
Bradaschia, C.
•
Branchesi, M.
•
Breschi, M.
•
Briant, T.
•
Brighenti, F.
•
Brillet, A.
•
Brooks, J.
•
Bulik, T.
•
Bulten, H. J.
•
Buskulic, D.
•
Buy, C.
•
Cagnoli, G.
•
Calloni, E.
•
Canepa, M.
•
Carapella, G.
•
Carbognani, F.
•
Carullo, G.
•
Casanueva Diaz, J.
•
Casentini, C.  
•
Caudill, S.
•
Cavalier, F.
•
Cavalieri, R.
•
Cella, G.
•
Cerdá-Durán, P.
•
Cesarini, E.
•
Chaibi, O.
•
Chassande-Mottin, E.
•
Chincarini, A.
•
Chiummo, A.
•
Christensen, N.
•
Chua, S.
•
Ciani, G.
•
Cieślar, M.
•
Ciolfi, R.  
•
Cipriano, F.
•
Cirone, A.
•
Cleva, F.
•
Coccia, E.
•
Cohadon, P. -F.
•
Cohen, D.
•
Colpi, M.
•
Conti, L.
•
Cordero-Carrión, I.
•
Corezzi, S.
•
Corre, D.
•
Cortese, S.
•
Coulon, J. -P.
•
Croquette, M.
•
Cuoco, E.
•
DÁngelo, B.
•
D'Antonio, S.
•
Dattilo, V.
•
Davier, M.
•
Degallaix, J.
•
De Laurentis, M.
•
Deléglise, S.
DOI
10.1016/j.astropartphys.2019.07.005
Abstract
Following a successful period of data-taking between 2006 and 2011, the Virgo gravitational-wave detector was taken offline for a major upgrade. The changes made to the instrument significantly increased the complexity of the control systems and meant that an extended period of commissioning was required to reach a sensitivity appropriate for science data-taking. This commissioning period was completed in July of 2017 and the second-generation Advanced Virgo detector went on to join the Advanced LIGO detectors in the O2 science run in August of the same year. The upgraded detector was approximately twice as sensitive to binary neutron star mergers as the first-generation instrument. During the August 2017 science run, Advanced Virgo detected its first gravitational wave signal, with the binary black hole merger, GW170729. This paper describes the control of the longitudinal degrees of freedom in the Advanced Virgo instrument during the O2 science run and the process that brought the detector from an uncontrolled, non-resonant state to its target working point.
Volume
116
Start page
102386
Uri
http://hdl.handle.net/20.500.12386/32643
Url
https://www.sciencedirect.com/science/article/abs/pii/S0927650519301835?via%3Dihub
Issn Identifier
0927-6505
Ads BibCode
2020APh...11602386A
Rights
open.access
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