Accès ouvert déclaré
2026
preprint
Narrow spectral artifact investigation and mitigation in LIGO data from the fourth LIGO-Virgo-KAGRA observing run
E. Goetz, A. Neunzert, A. M. Knee, A. Calafat, X. Fan, J-R. Mérou, K. A. Pham, T. Starkman, N. Aggarwal, Z. Bhalla, P. Baxi, J. Bayley, Y. Bu, J. B. Carlin, P. Charlton, X. Chen, G. Cheng, T. Cheunchitra, N. Christensen, A. Claveus, C. M. Compton, M. W. Coughlin, F. De Lillo, L. Dunn, S. E. Dwyer, A. Effler, T. A. Ferreira, B Finkel, P. Goodarzi, A. E. Granados, H. Guo, C. Hsiung, K. Janssens, S. Kandhasamy, K. Kawabe, Y. -M. Kim, T. Kimpson, R. Krismer, M. Lalleman, Y. S. C. Lee, N. K. Y. Low, J. C. Martins, H. Middleton, C. -A. Miritescu, D. Nykamp, J. O'Leary, A. Renzini, K. Riles, A. Romero-Rodríguez, J. R. Sanders, R. M. S. Schofield, D. Singh, R. Slocum, Q. Song, J. Suresh, S. Suyamprakasam, J. D. Tasson, A. Tripathee, A. F. Vargas, A. Wang, K. Wu, J. Yee, J. Yi, Z. Zhang, R. Abbott, I. Abouelfettouh, R. X. Adhikari, A. Ananyeva, S. Appert, S Apple, K. Arai, N. Aritomi, S. M. Aston, M. Ball, S. W. Ballmer, D. Barker, L. Barsotti, B. K. Berger, J. Betzwieser, D. Bhattacharjee, G. Billingsley, S. Biscans, C D Blair, N. Bode, E. Bonilla, V. Bossilkov, A. Branch, A. F. Brooks, D. D. Brown, J. Bryant, C. Cahillane, S. R. Callos, H. Cao, E. Capote, F. Clara, J. Collins, G. Connolly, R. Cottingham, D. C. Coyne, R. Crouch, J. Csizmazia, A. Cumming, L Dartez, D. Davis, N. Demos, E. Dohmen, K. L. Dooley, J. C. Driggers, A Ejlli, T. Etzel, M. Evans, J. Feicht, R. Frey, W. Frischhertz, P. Fritschel, Frolov VV, M. Fuentes-Garcia, P. Fulda, M. Fyffe, D. Ganapathy, B. Gateley, T. Gayer, Giaime JA, K. D. Giardina, J. Glanzer, R. Goetz, A. W. Goodwin-Jones, S. Gras, C. Gray, D. Griffith, H. Grote, T. Guidry, J. Gurs, E. D. Hall, J. Hanks, J. Hanson, M. C. Heintze, A. F. Helmling-Cornell, N. A. Holland, D. Hoyland, H. Y. Huang, Y. Inoue, A. L. James, A. Jamies, R. Jaume, A. Jennings, W. Jia, D. H. Jones, H. B. Kabagoz, S Karat, S. Karki, M. Kasprzack, D. Keitel, N. Kijbunchoo, King PJ, J. S. Kissel, K. Komori, A. Kontos, R. Kumar, K. Kuns, M. Landry, B. Lantz, M. Laxen, K. Lee, M. Lesovsky, F. Llamas Villarreal, M. Lormand, H. A. Loughlin, R. Macas, M. MacInnis, C. N. Makarem, B. M. Mannix, G. L. Mansell, R. M. Martin, K. Mason, Matichard F, N. Mavalvala, N. Maxwell, G. McCarrol, R. McCarthy, McClelland DE, S. McCormick, T. McRae, F. Mera, E. L. Merilh, F. Meylahn, R. Mittleman, D. Moraru, G. Moreno, A. Mullavey, M. Nakano, T. J. N. Nelson, J. Notte, J. Oberling, T. O'Hanlon, R. Oram, C. Osthelder, Ottaway DJ, H. Overmier, W. Parker, O. Patane, A. Pele, H. Pham, M. Pirello, J. Pullin, V. Quetschke, K. E. Ramirez, K. Ransom, J Reyes, J. W. Richardson, M. Robinson, J. G. Rollins, C. L. Romel, J. H. Romie, M Ross, B. I. Rotimi, K. Ryan, T. Sadecki, A. Sanchez, E. J. Sanchez, L. E. Sanchez, R. L. Savage, D. Schaetzl, M. G. Schiworski, R. Schnabel, E. Schwartz, D. Sellers, T. Shaffer, R. W. Short, D. Sigg, Sintes AM, B. J. J. Slagmolen, C. Soike, S. Soni, V. Srivastava, L. Sun, D. B. Tanner, M. Thomas, P. Thomas, K. A. Thorne, M Hoefen Todd, C. I. Torrie, G. Traylor, A Ubhi, G. Vajente, J. Vanosky, A. Vecchio, P. J. Veitch, A. M. Vibhute, E. R. G. von Reis, J. Warner, B. Weaver, R. Weiss, C. Whittle, B. Willke, C. C. Wipf, J. L. Wright, V. A. Xu, H. Y. Yamamoto, L. Zhang, M. E. Zucker
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Le résumé fourni par la source
We present efforts to identify, characterize, and mitigate narrow spectral artifacts in LIGO detector data during the fourth LIGO-Virgo-KAGRA observing run. Narrow spectral artifacts in gravitational-wave detectors are non-astrophysical noise sources that can degrade searches for narrowband persistent gravitational waves. Identifying and, where possible, mitigating these noise sources is one of the core efforts of the LIGO Detector Characterization group. Key software tools have been updated and new tools deployed for the fourth LIGO-Virgo-KAGRA observing run to facilitate investigations and data monitoring. We discuss these tool upgrades, and present several identified narrowband artifacts that have been successfully investigated and mitigated in LIGO data. Regardless of whether artifacts are mitigated or not, narrowband persistent gravitational-wave searches require information on which frequency bands contain non-astrophysical artifacts. Minimizing the number of bands containing non-astrophysical artifacts is essential to maximize the potential for discovery of a new class of gravitational-wave signals.
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Les sujets associés
Pulsars and Gravitational Waves ResearchCosmology and Gravitation TheoriesGeophysics and Gravity Measurements