Prospects for observing and localizing gravitational-wave transients with Advanced LIGO, Advanced Virgo and KAGRA

利用高级LIGO、高级Virgo和KAGRA观测和定位引力波瞬变信号的前景

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作者:B P Abbott,R Abbott,T D Abbott,M R Abernathy,F Acernese,K Ackley,C Adams,T Adams,P Addesso,R X Adhikari,V B Adya,C Affeldt,M Agathos,K Agatsuma,N Aggarwal,O D Aguiar,L Aiello,A Ain,P Ajith,T Akutsu,B Allen ,A Allocca,P A Altin,A Ananyeva,S B Anderson,W G Anderson,M Ando ,S Appert,K Arai,A Araya,M C Araya,J S Areeda,N Arnaud,K G Arun,H Asada,S Ascenzi,G Ashton,Y Aso,M Ast,S M Aston,P Astone,S Atsuta,P Aufmuth,C Aulbert,A Avila-Alvarez,K Awai,S Babak,P Bacon,M K M Bader,L Baiotti,P T Baker,F Baldaccini,G Ballardin,S W Ballmer,J C Barayoga,S E Barclay,B C Barish,D Barker,F Barone,B Barr,L Barsotti,M Barsuglia,D Barta,J Bartlett,M A Barton,I Bartos,R Bassiri,A Basti,J C Batch,C Baune,V Bavigadda,M Bazzan,B Bécsy,C Beer,M Bejger,I Belahcene,M Belgin,A S Bell,B K Berger,G Bergmann,C P L Berry,D Bersanetti,A Bertolini,J Betzwieser,S Bhagwat,R Bhandare,I A Bilenko,G Billingsley,C R Billman,J Birch,R Birney,O Birnholtz,S Biscans,A Bisht,M Bitossi,C Biwer,M A Bizouard,J K Blackburn,J Blackman,C D Blair,D G Blair,R M Blair,S Bloemen,O Bock,M Boer,G Bogaert,A Bohe,F Bondu,R Bonnand,B A Boom,R Bork,V Boschi,S Bose,Y Bouffanais,A Bozzi,C Bradaschia,P R Brady,V B Braginsky,M Branchesi,J E Brau,T Briant,A Brillet,M Brinkmann,V Brisson,P Brockill,J E Broida,A F Brooks,D A Brown,D D Brown,N M Brown,S Brunett,C C Buchanan,A Buikema,T Bulik,H J Bulten,A Buonanno,D Buskulic,C Buy,R L Byer,M Cabero,L Cadonati,G Cagnoli,C Cahillane,J Calderón Bustillo,T A Callister,E Calloni,J B Camp,K C Cannon,H Cao,J Cao,C D Capano,E Capocasa,F Carbognani,S Caride,J Casanueva Diaz,C Casentini,S Caudill,M Cavaglià,F Cavalier,R Cavalieri,G Cella,C B Cepeda,L Cerboni Baiardi,G Cerretani,E Cesarini,S J Chamberlin,M Chan,S Chao,P Charlton,E Chassande-Mottin,B D Cheeseboro,H Y Chen,Y Chen,H-P Cheng,A Chincarini,A Chiummo,T Chmiel,H S Cho,M Cho,J H Chow,N Christensen,Q Chu,A J K Chua,S Chua,S Chung,G Ciani,F Clara,J A Clark,F Cleva,C Cocchieri,E Coccia,P-F Cohadon,A Colla,C G Collette,L Cominsky,M Constancio Jr,L Conti,S J Cooper,T R Corbitt,N Cornish,A Corsi,S Cortese,C A Costa,M W Coughlin,S B Coughlin,J-P Coulon,S T Countryman,P Couvares,P B Covas,E E Cowan,D M Coward,M J Cowart,D C Coyne,R Coyne,J D E Creighton,T D Creighton,J Cripe,S G Crowder,T J Cullen,A Cumming,L Cunningham,E Cuoco,T Dal Canton,S L Danilishin,S D'Antonio,K Danzmann,A Dasgupta,C F Da Silva Costa,V Dattilo,I Dave,M Davier,G S Davies,D Davis,E J Daw,B Day,R Day,S De,D DeBra,G Debreczeni,J Degallaix,M De Laurentis,S Deléglise,W Del Pozzo,T Denker,T Dent,V Dergachev,R De Rosa,R T DeRosa,R DeSalvo ,R C Devine,S Dhurandhar,M C Díaz,L Di Fiore,M Di Giovanni,T Di Girolamo,A Di Lieto,S Di Pace,I Di Palma ,A Di Virgilio,Z Doctor,K Doi,V Dolique,F Donovan,K L Dooley,S Doravari,I Dorrington,R Douglas,M Dovale Álvarez,T P Downes,M Drago,R W P Drever,J C Driggers,Z Du,M Ducrot,S E Dwyer,K Eda,T B Edo,M C Edwards,A Effler,H-B Eggenstein,P Ehrens,J Eichholz,S S Eikenberry,R A Eisenstein,R C Essick,Z Etienne,T Etzel,M Evans,T M Evans,R Everett,M Factourovich,V Fafone ,H Fair,S Fairhurst,X Fan,S Farinon,B Farr,W M Farr,E J Fauchon-Jones,M Favata,M Fays,H Fehrmann,M M Fejer,A Fernández Galiana,I Ferrante,E C Ferreira,F Ferrini,F Fidecaro,I Fiori,D Fiorucci,R P Fisher,R Flaminio,M Fletcher,H Fong,S S Forsyth,J-D Fournier,S Frasca,F Frasconi,Z Frei,A Freise,R Frey,V Frey,E M Fries,P Fritschel,V V Frolov,Y Fujii,M-K Fujimoto,P Fulda,M Fyffe,H Gabbard,B U Gadre,S M Gaebel,J R Gair,L Gammaitoni,S G Gaonkar,F Garufi,G Gaur,V Gayathri,N Gehrels,G Gemme,E Genin,A Gennai,J George,L Gergely,V Germain,S Ghonge,Abhirup Ghosh,Archisman Ghosh,S Ghosh,J A Giaime,K D Giardina,A Giazotto,K Gill,A Glaefke,E Goetz,R Goetz,L Gondan,G González,J M Gonzalez Castro,A Gopakumar,M L Gorodetsky,S E Gossan,M Gosselin,R Gouaty,A Grado,C Graef,M Granata,A Grant,S Gras,C Gray,G Greco,A C Green,P Groot,H Grote,S Grunewald,G M Guidi,X Guo,A Gupta,M K Gupta,K E Gushwa,E K Gustafson,R Gustafson,J J Hacker,A Hagiwara,B R Hall,E D Hall,G Hammond,M Haney,M M Hanke,J Hanks,C Hanna,M D Hannam,J Hanson,T Hardwick,J Harms,G M Harry,I W Harry,M J Hart,M T Hartman,C-J Haster,K Haughian,K Hayama,J Healy,A Heidmann,M C Heintze,H Heitmann,P Hello,G Hemming,M Hendry,I S Heng,J Hennig,J Henry,A W Heptonstall,M Heurs,S Hild,E Hirose,D Hoak,D Hofman,K Holt,D E Holz,P Hopkins,J Hough,E A Houston,E J Howell,Y M Hu,E A Huerta,D Huet,B Hughey,S Husa,S H Huttner,T Huynh-Dinh,N Indik,D R Ingram,R Inta,K Ioka,H N Isa,J-M Isac,M Isi,T Isogai,Y Itoh,B R Iyer,K Izumi,T Jacqmin,K Jani,P Jaranowski,S Jawahar,F Jiménez-Forteza,W W Johnson,D I Jones,R Jones,R J G Jonker,L Ju,J Junker,T Kagawa,T Kajita,M Kakizaki,C V Kalaghatgi,V Kalogera,M Kamiizumi,N Kanda,S Kandhasamy,S Kanemura,M Kaneyama,G Kang,J B Kanner,S Karki,K S Karvinen,M Kasprzack,Y Kataoka,E Katsavounidis,W Katzman,S Kaufer,T Kaur,K Kawabe,N Kawai,S Kawamura,F Kéfélian,D Keitel,D B Kelley,R Kennedy,J S Key,F Y Khalili,I Khan,S Khan,Z Khan,E A Khazanov,N Kijbunchoo,C Kim,H Kim,J C Kim,J Kim,W Kim,Y-M Kim,S J Kimbrell,N Kimura,E J King,P J King,R Kirchhoff,J S Kissel,B Klein,L Kleybolte,S Klimenko,P Koch,S M Koehlenbeck,Y Kojima,K Kokeyama,S Koley,K Komori,V Kondrashov,A Kontos,M Korobko,W Z Korth,K Kotake,I Kowalska,D B Kozak,C Krämer,V Kringel,B Krishnan,A Królak,G Kuehn,P Kumar,Rahul Kumar,Rakesh Kumar,L Kuo,K Kuroda,A Kutynia,Y Kuwahara,B D Lackey,M Landry,R N Lang,J Lange,B Lantz,R K Lanza,A Lartaux-Vollard,P D Lasky,M Laxen,A Lazzarini,C Lazzaro,P Leaci,S Leavey,E O Lebigot,C H Lee,H K Lee,H M Lee,H W Lee,K Lee,J Lehmann,A Lenon,M Leonardi,J R Leong,N Leroy,N Letendre,Y Levin,T G F Li,A Libson,T B Littenberg,J Liu,N A Lockerbie,A L Lombardi,L T London,J E Lord,M Lorenzini,V Loriette,M Lormand,G Losurdo,J D Lough,C O Lousto,G Lovelace,H Lück,A P Lundgren,R Lynch,Y Ma,S Macfoy,B Machenschalk,M MacInnis,D M Macleod,F Magaña-Sandoval,E Majorana,I Maksimovic,V Malvezzi,N Man,V Mandic,V Mangano,S Mano,G L Mansell,M Manske,M Mantovani,F Marchesoni,M Marchio,F Marion,S Márka,Z Márka,A S Markosyan,E Maros,F Martelli,L Martellini,I W Martin,D V Martynov,K Mason,A Masserot,T J Massinger,M Masso-Reid,S Mastrogiovanni,F Matichard,L Matone,N Matsumoto,F Matsushima,N Mavalvala,N Mazumder,R McCarthy,D E McClelland,S McCormick,C McGrath,S C McGuire,G McIntyre,J McIver,D J McManus,T McRae,S T McWilliams,D Meacher,G D Meadors,J Meidam,A Melatos,G Mendell,D Mendoza-Gandara,R A Mercer,E L Merilh,M Merzougui,S Meshkov,C Messenger,C Messick,R Metzdorff,P M Meyers,F Mezzani,H Miao,C Michel,Y Michimura,H Middleton,E E Mikhailov,L Milano,A L Miller ,A Miller,B B Miller,J Miller,M Millhouse,Y Minenkov,J Ming,S Mirshekari

Abstract

We present possible observing scenarios for the Advanced LIGO, Advanced Virgo and KAGRA gravitational-wave detectors over the next decade, with the intention of providing information to the astronomy community to facilitate planning for multi-messenger astronomy with gravitational waves. We estimate the sensitivity of the network to transient gravitational-wave signals, and study the capability of the network to determine the sky location of the source. We report our findings for gravitational-wave transients, with particular focus on gravitational-wave signals from the inspiral of binary neutron star systems, which are the most promising targets for multi-messenger astronomy. The ability to localize the sources of the detected signals depends on the geographical distribution of the detectors and their relative sensitivity, and [Formula: see text] credible regions can be as large as thousands of square degrees when only two sensitive detectors are operational. Determining the sky position of a significant fraction of detected signals to areas of 5-[Formula: see text] requires at least three detectors of sensitivity within a factor of [Formula: see text] of each other and with a broad frequency bandwidth. When all detectors, including KAGRA and the third LIGO detector in India, reach design sensitivity, a significant fraction of gravitational-wave signals will be localized to a few square degrees by gravitational-wave observations alone.

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