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Upper Limits on the Stochastic Gravitational-Wave Background from Advanced LIGO's First Observing Run.

Authors :
Abbott BP
Abbott R
Abbott TD
Abernathy MR
Acernese F
Ackley K
Adams C
Adams T
Addesso P
Adhikari RX
Adya VB
Affeldt C
Agathos M
Agatsuma K
Aggarwal N
Aguiar OD
Aiello L
Ain A
Ajith P
Allen B
Allocca A
Altin PA
Ananyeva A
Anderson SB
Anderson WG
Appert S
Arai K
Araya MC
Areeda JS
Arnaud N
Arun KG
Ascenzi S
Ashton G
Ast M
Aston SM
Astone P
Aufmuth P
Aulbert C
Avila-Alvarez A
Babak S
Bacon P
Bader MK
Baker PT
Baldaccini F
Ballardin G
Ballmer SW
Barayoga JC
Barclay SE
Barish BC
Barker D
Barone F
Barr B
Barsotti L
Barsuglia M
Barta D
Bartlett J
Bartos I
Bassiri R
Basti A
Batch JC
Baune C
Bavigadda V
Bazzan M
Beer C
Bejger M
Belahcene I
Belgin M
Bell AS
Berger BK
Bergmann G
Berry CP
Bersanetti D
Bertolini A
Betzwieser J
Bhagwat S
Bhandare R
Bilenko IA
Billingsley G
Billman CR
Birch J
Birney R
Birnholtz O
Biscans S
Biscoveanu AS
Bisht A
Bitossi M
Biwer C
Bizouard MA
Blackburn JK
Blackman J
Blair CD
Blair DG
Blair RM
Bloemen S
Bock O
Boer M
Bogaert G
Bohe A
Bondu F
Bonnand R
Boom BA
Bork R
Boschi V
Bose S
Bouffanais Y
Bozzi A
Bradaschia C
Brady PR
Braginsky VB
Branchesi M
Brau JE
Briant T
Brillet A
Brinkmann M
Brisson V
Brockill P
Broida JE
Brooks AF
Brown DA
Brown DD
Brown NM
Brunett S
Buchanan CC
Buikema A
Bulik T
Bulten HJ
Buonanno A
Buskulic D
Buy C
Byer RL
Cabero M
Cadonati L
Cagnoli G
Cahillane C
Calderón Bustillo J
Callister TA
Calloni E
Camp JB
Campbell W
Canepa M
Cannon KC
Cao H
Cao J
Capano CD
Capocasa E
Carbognani F
Caride S
Casanueva Diaz J
Casentini C
Caudill S
Cavaglià M
Cavalier F
Cavalieri R
Cella G
Cepeda CB
Cerboni Baiardi L
Cerretani G
Cesarini E
Chamberlin SJ
Chan M
Chao S
Charlton P
Chassande-Mottin E
Cheeseboro BD
Chen HY
Chen Y
Cheng HP
Chincarini A
Chiummo A
Chmiel T
Cho HS
Cho M
Chow JH
Christensen N
Chu Q
Chua AJ
Chua S
Chung S
Ciani G
Clara F
Clark JA
Cleva F
Cocchieri C
Coccia E
Cohadon PF
Colla A
Collette CG
Cominsky L
Constancio M
Conti L
Cooper SJ
Corbitt TR
Cornish N
Corsi A
Cortese S
Costa CA
Coughlin E
Coughlin MW
Coughlin SB
Coulon JP
Countryman ST
Couvares P
Covas PB
Cowan EE
Coward DM
Cowart MJ
Coyne DC
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Creighton JD
Creighton TD
Cripe J
Crowder SG
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Cumming A
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Cuoco E
Dal Canton T
Danilishin SL
D'Antonio S
Danzmann K
Dasgupta A
Da Silva Costa CF
Dattilo V
Dave I
Davier M
Davies GS
Davis D
Daw EJ
Day B
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De S
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Debreczeni G
Degallaix J
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Deléglise S
Del Pozzo W
Denker T
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Dergachev V
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Devine RC
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Díaz MC
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Di Girolamo T
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Evans M
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Factourovich M
Fafone V
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Farr B
Farr WM
Fauchon-Jones EJ
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Fehrmann H
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Fernández Galiana A
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Fidecaro F
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Forsyth SS
Fournier JD
Frasca S
Frasconi F
Frei Z
Freise A
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Frey V
Fries EM
Fritschel P
Frolov VV
Fulda P
Fyffe M
Gabbard H
Gadre BU
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Gair JR
Gammaitoni L
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Giardina KD
Giazotto A
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Holz DE
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Houston EA
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Hu YM
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Huynh-Dinh T
Indik N
Ingram DR
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Isa HN
Isac JM
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Iyer BR
Izumi K
Jacqmin T
Jani K
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Jiménez-Forteza F
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Kalaghatgi CV
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Kasprzack M
Katsavounidis E
Katzman W
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Kelley DB
Kennedy R
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Khazanov EA
Kijbunchoo N
Kim C
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King EJ
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Kirchhoff R
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Klimenko S
Koch P
Koehlenbeck SM
Koley S
Kondrashov V
Kontos A
Korobko M
Korth WZ
Kowalska I
Kozak DB
Krämer C
Kringel V
Królak A
Kuehn G
Kumar P
Kumar R
Kuo L
Kutynia A
Lackey BD
Landry M
Lang RN
Lange J
Lantz B
Lanza RK
Lartaux-Vollard A
Lasky PD
Laxen M
Lazzarini A
Lazzaro C
Leaci P
Leavey S
Lebigot EO
Lee CH
Lee HK
Lee HM
Lee K
Lehmann J
Lenon A
Leonardi M
Leong JR
Leroy N
Letendre N
Levin Y
Li TG
Libson A
Littenberg TB
Liu J
Lockerbie NA
Lombardi AL
London LT
Lord JE
Lorenzini M
Loriette V
Lormand M
Losurdo G
Lough JD
Lovelace G
Lück H
Lundgren AP
Lynch R
Ma Y
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Machenschalk B
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Macleod DM
Magaña-Sandoval F
Majorana E
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Malvezzi V
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Mansell GL
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Marchesoni F
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Márka S
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Markosyan AS
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Martelli F
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Martin IW
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Massinger TJ
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Meshkov S
Messenger C
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Middleton H
Mikhailov EE
Milano L
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Source :
Physical review letters [Phys Rev Lett] 2017 Mar 24; Vol. 118 (12), pp. 121101. Date of Electronic Publication: 2017 Mar 24.
Publication Year :
2017

Abstract

A wide variety of astrophysical and cosmological sources are expected to contribute to a stochastic gravitational-wave background. Following the observations of GW150914 and GW151226, the rate and mass of coalescing binary black holes appear to be greater than many previous expectations. As a result, the stochastic background from unresolved compact binary coalescences is expected to be particularly loud. We perform a search for the isotropic stochastic gravitational-wave background using data from Advanced Laser Interferometer Gravitational Wave Observatory's (aLIGO) first observing run. The data display no evidence of a stochastic gravitational-wave signal. We constrain the dimensionless energy density of gravitational waves to be Ω_{0}<1.7×10^{-7} with 95% confidence, assuming a flat energy density spectrum in the most sensitive part of the LIGO band (20-86 Hz). This is a factor of ∼33 times more sensitive than previous measurements. We also constrain arbitrary power-law spectra. Finally, we investigate the implications of this search for the background of binary black holes using an astrophysical model for the background.

Details

Language :
English
ISSN :
1079-7114
Volume :
118
Issue :
12
Database :
MEDLINE
Journal :
Physical review letters
Publication Type :
Academic Journal
Accession number :
28388180
Full Text :
https://doi.org/10.1103/PhysRevLett.118.121101