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  A Cryogenic Silicon Interferometer for Gravitational-wave Detection

Adhikari, R. X., Aguiar, O., Arai, K., Barr, B., Bassiri, R., Billingsley, G., et al. (2020). A Cryogenic Silicon Interferometer for Gravitational-wave Detection. Classical and quantum gravity, 37(16): 165003. doi:10.1088/1361-6382/ab9143.

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 Urheber:
Adhikari, Rana X, Autor
Aguiar, Odylio, Autor
Arai, Koji, Autor
Barr, Bryan, Autor
Bassiri, Riccardo, Autor
Billingsley, Garilynn, Autor
Birney, Ross, Autor
Blair, David, Autor
Briggs, Joseph, Autor
Brooks, Aidan F, Autor
Brown, Daniel D, Autor
Cao, Huy-Tuong, Autor
Constancio, Marcio, Autor
Cooper, Sam, Autor
Corbitt, Thomas, Autor
Coyne, Dennis, Autor
Daw, Edward, Autor
Eichholz, Johannes, Autor
Fejer, Martin, Autor
Freise, Andreas, Autor
Frolov, Valery, AutorGras, Slawomir, AutorGreen, Anna, AutorGrote, Hartmut, AutorGustafson, Eric K, AutorHall, Evan D, AutorHammond, Giles, AutorHarms, Jan, AutorHarry, Gregg, AutorHaughian, Karen, AutorHellman, Frances, AutorHennig, Jan-Simon, AutorHennig , Margot1, AutorHild, Stefan, AutorJohnson, Warren, AutorKamai, Brittany, AutorKapasi, Disha, AutorKomori, Kentaro, AutorKorobko, Mikhail, AutorKuns, Kevin, AutorLantz, Brian, AutorLeavey, Sean2, Autor           Magana-Sandoval, Fabian, AutorMarkosyan, Ashot, AutorMartin, Iain, AutorMartin, Rodica, AutorMartynov, Denis V, AutorMcclelland, David, AutorMcghee, Graeme, AutorMills, Joseph, AutorMitrofanov, Valery, AutorMolina-Ruiz, Manel, AutorMow-Lowry, Conor, AutorMurray, Peter, AutorNg, Sebastian, AutorProkhorov, Leonid, AutorQuetschke, Volker, AutorReid, Stuart, AutorReitze, David, AutorRichardson, Jonathan, AutorRobie, Raymond, AutorRomero-Shaw, Isobel, AutorRowan, Sheila, AutorSchnabel, Roman, AutorSchneewind , Merle1, AutorShapiro, Brett, AutorShoemaker, David, AutorSlagmolen, Bram, AutorSmith, Joshua, AutorSteinlechner, Jessica, AutorTait, Simon, AutorTanner, David, AutorTorrie, Calum, AutorVanheijningen, Joris, AutorVeitch, Peter, AutorWallace, Gavin, AutorWessels , Peter1, AutorWillke, Benno2, Autor           Wipf, Christopher, AutorYamamoto, Hiro, AutorZhao, Chunnong, AutorBarsotti, Lisa, AutorWard, Robert, AutorBell, Angus, AutorByer, Robert, AutorWade, Andrew, AutorKorth, William Z, AutorSeifert, Frank, AutorSmith, Nicholas, AutorKoptsov, Dimitry, AutorTornasi, Zeno, AutorMarkowitz, Aaron, AutorMansell, Georgia, AutorMcrae, Terry, AutorAltin, Paul, AutorYap, Min J, AutorVan Veggel, Marielle, AutorEddolls, Graeme, AutorBonilla, Edgard, AutorFerreira, Elvis C, AutorSilva, Allan S, AutorOkada, Marcos A, AutorTaira, Diego, AutorHeinert, Daniel, AutorHough, James, AutorStrain, Ken, AutorCumming, Alan, AutorRoute, Roger, AutorShaddock, Daniel, AutorEvans, Matthew, AutorWeiss, Rainer, Autor mehr..
Affiliations:
1AEI-Hannover, MPI for Gravitational Physics, Max Planck Society, Hannover, DE, ou_24009              
2Laser Interferometry & Gravitational Wave Astronomy, AEI-Hannover, MPI for Gravitational Physics, Max Planck Society, ou_24010              

Inhalt

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Schlagwörter: Astrophysics, Instrumentation and Methods for Astrophysics, astro-ph.IM,General Relativity and Quantum Cosmology, gr-qc, Physics, Instrumentation and Detectors, physics.ins-det
 Zusammenfassung: The detection of gravitational waves from compact binary mergers by LIGO has
opened the era of gravitational wave astronomy, revealing a previously hidden
side of the cosmos. To maximize the reach of the existing LIGO observatory
facilities, we have designed a new instrument that will have 5 times the range
of Advanced LIGO, or greater than 100 times the event rate. Observations with
this new instrument will make possible dramatic steps toward understanding the
physics of the nearby universe, as well as observing the universe out to
cosmological distances by the detection of binary black hole coalescences. This
article presents the instrument design and a quantitative analysis of the
anticipated noise floor.

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 Datum: 2020-01-292020
 Publikationsstatus: Erschienen
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Titel: Classical and quantum gravity
Genre der Quelle: Zeitschrift
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Ort, Verlag, Ausgabe: -
Seiten: - Band / Heft: 37 (16) Artikelnummer: 165003 Start- / Endseite: - Identifikator: -