Accès ouvert déclaré
2011
preprint
Characterization of the Virgo Seismic Environment
T. Accadia, F. Acernese, P. Astone, G. Ballardin, F. Barone, M. Barsuglia, A. Basti, Th. S. Bauer, M. Bebronne, M. G. Beker, A. Bellétoile, M. Bitossi, M. A. Bizouard, M. Blom, F. Bondu, Lucia Bonelli, R. Bonnand, Valerio Boschi, L. Bosi, B. Bouhou, Stefano Braccini, C. Bradaschia, M. Branchesi, T. Briant, A. Brillet, V. Brisson, T. Bulik, H. J. Bulten, D. Buskulic, C. Buy, G. Cagnoli, E. Calloni, B. Canuel, F. Carbognani, F. Cavalier, R. Cavalieri, Giancarlo Cella, E. Cesarini, O. Chaibi, Eric Chassande-Mottin, A. Chincarini, A. Chiummo, F. Cleva, E. Coccia, P. -F. Cohadon, C. N. Colacino, J. Colas, Alessandro Colla, M. Colombini, A. Conte, M. W. Coughlin, J.-P. Coulon, E. Cuoco, S. D’Antonio, Vincenzino Dattilo, R. Day, R. De Rosa, G. Debreczeni, W. Del Pozzo, M. Del Prete, L. Di Fiore, Alberto Di Lieto, M. Di Paolo Emilio, Angela D. V. Di Virgilio, A. Dietz, M. Drago, G. Endrőczi, V. Fafone, Isidoro Ferrante, Francesco Fidecaro, Irene Fiori, R. Flaminio, Luca Antonio Forte, J.-D. Fournier, Janyce Franc, S. Frasca, F. Frasconi, M. Galimberti, L. Gammaitoni, Fabio Garufi, M. E. Gáspár, G. Gemme, É. Genin, A. Gennai, A. Giazotto, R. Gouaty, M. Granata, C. Greverie, Gianluca Maria Guidi, J.-F. Hayau, A. Heidmann, H. Heitmann, P. Hello, P. Jaranowski, I. Kowalska, Andrzej Krolak, N. Leroy, N. Letendre, T. G. F. Li, N. Liguori, M. Lorenzini, V. Loriette, Giovanni Losurdo, ETTORE MAJORANA, Ivan Maksimovic, N. Man, Maddalena Mantovani, F. Marchesoni, F. Marion, J. Marque, F. Martelli, A. Masserot, C. Michel, Leopoldo Milano, Y. Minenkov, M. Mohan, N. Morgado, A. Morgia, S. Mosca, B. Mours, Luca Naticchioni, Francesco Nocera, G. Pagliaroli, L. Palladino, CRISTIANO PALOMBA, Federico Paoletti, M. Parisi, A. Pasqualetti, R. Passaquieti, D. Passuello, Gianluca Persichetti, Francesco Piergiovanni, M. Piȩtka, L. Pinard, R. Poggiani, Mirko Prato, Giovanni Andrea Prodi, M. Punturo, P. Puppo, D. S. Rabeling, István Rácz, Piero Rapagnani, V. Re, T. Regimbau, F. Robinet, A. Rocchi, L. Rolland, Rocco Romano, D. Rosińska, P. Ruggi, B. Sassolas, Daniel Sentenac, L. Sperandio, R. Sturani, Bas L. Swinkels, Matteo Tacca, L. Taffarello, A. Toncelli, M. Tonelli, O. Torre, E. Tournefier, F. Travasso, G. Vajente, J. F. J. van den Brand, S. van der Putten, M. Vasúth, M. Vavoulidis, G. Vedovato, D. Verkindt, FLAVIO VETRANO, Andrea Viceré, J. -Y. Vinet, S. Vitale, H. Vocca, Robert L. Ward, Michał Wąs, M. Yvert, A. Zadrożny, J. -P. Zendri
0Citations signalées, ce qui n’est pas une note de qualité
0Institutions déclarées
0Pays d’affiliation déclarés
Le résumé fourni par la source
The Virgo gravitational wave detector is an interferometer (ITF) with 3km arms located in Pisa, Italy. From July to October 2010, Virgo performed its third science run (VSR3) in coincidence with the LIGO detectors. Despite several techniques adopted to isolate the interferometer from the environment, seismic noise remains an important issue for Virgo. Vibrations produced by the detector infrastructure (such as air conditioning units, water chillers/heaters, pumps) are found to affect Virgo's sensitivity, with the main coupling mechanisms being through beam jitter and scattered light processes. The Advanced Virgo (AdV) design seeks to reduce ITF couplings to environmental noise by having most vibration-sensitive components suspended and in-vacuum, as well as muffle and relocate loud machines. During the months of June and July 2010, a Guralp-3TD seismometer was stationed at various locations around the Virgo site hosting major infrastructure machines. Seismic data were examined using spectral and coherence analysis with seismic probes close to the detector. The primary aim of this study was to identify noisy machines which seismically affect the ITF environment and thus require mitigation attention. Analyzed machines are located at various distances from the experimental halls, ranging from 10m to 100m. An attempt is made to measure the attenuation of emitted noise at the ITF and correlate it to the distance from the source and to seismic attenuation models in soil.
Ce résumé expose les affirmations des auteurs. BNTIC ne l’interprète pas comme une validation indépendante des résultats.
Le contrôle bibliographique ouvert
La source scientifique ouverte est momentanément indisponible.
Les sujets associés
Seismic Waves and AnalysisGeophysics and Sensor TechnologyPulsars and Gravitational Waves Research