165 research outputs found
Dynamical measure and field theory models free of the cosmological constant problem
- Author
- A. Albrecht
- A. Aurilia
- A. Aurilia
- A. Aurilia
- A. B. Kaganovich
- A.A. Starobinsky
- A.D. Linde
- A.D. Linde
- A.H. Guth
- C. Castro
- D. La
- E. I. Guendelman
- E.I. Guendelman
- E.I. Guendelman
- E.I. Guendelman
- E.I. Guendelman
- E.I. Guendelman
- E.I. Guendelman
- E.I. Guendelman
- E.I. Guendelman
- E.I. Guendelman
- E.I. Guendelman
- E.I. Guendelman
- F. Gronwald
- F.W. Hehl
- G.B. Giddings
- G.K. Savvidy
- I. Novikov
- J. Preskill
- J.A. Schouten
- J.D. Brown
- J.D. Brown
- L. B. Okun
- N.K. Nielsen
- N.K. Nielsen
- P. Baekler
- P.G.O. Freund
- S. Coleman
- S. Coleman
- S. Weinberg
- S.W. Hawking
- S.W. Hawking
- V. de Sabbata
- W. Bardeen
- Y. Nambu
- Y. Nambu
- Y. Neâeman
- Y. Neâeman
- Y.J. Ng
- Publication venue
- 'American Physical Society (APS)'
- Publication date
- 01/01/1999
- Field of study
Summary of abstract Field theory models including gauge theories with SSB are
presented where the energy density of the true vacuum state (TVS) is zero
without fine tuning. The above models are constructed in the gravitational
theory where a measure of integration \Phi in the action is not necessarily
\sqrt{-g} but it is determined dynamically through additional degrees of
freedom. The ratio \Phi/\sqrt{-g} is a scalar field which can be solved in
terms of the matter degrees of freedom due to the existence of a constraint. We
study a few explicit field theory models where it is possible to combine the
solution of the cosmological constant problem with: 1) possibility for
inflationary scenario for the early universe; 2) spontaneously broken gauge
unified theories (including fermions). The models are free from the well known
problem of the usual scalar-tensor theories in what is concerned with the
classical GR tests. The only difference of the field equations in the Einstein
frame from the canonical equations of the selfconsistent system of Einstein's
gravity and matter fields, is the appearance of the effective scalar field
potential which vanishes in TVS without fine tuning.Comment: Extended version of the contribution to the fourth Alexander
Friedmann International Seminar on Gravitation and Cosmology; accepted for
publication in Phys. Rev. D; 31 page
Lorentz breaking Effective Field Theory and observational tests
- Author
- A. Glushkov
- A. Sakharov
- A. Saveliev
- A. Zee
- A.G. Cohen
- A.G. Cohen
- A.G. Riess
- A.J. Dean
- A.N. Parmar
- B. Altschul
- B. Ward
- C. Barcelo
- C. Barcelo
- C. Barcelo
- C. Barcelo
- C.F. Kennel
- C.P. Burgess
- C.Y. Ng
- D. Anselmi
- D. Blas
- D. Colladay
- D. Hooper
- D. Mattingly
- D. Mattingly
- D.I. Blokhintsev
- D.M. Mattingly
- F. Aharonian
- F. Stecker
- F.W. Stecker
- F.W. Stecker
- G. Amelino-Camelia
- G. Amelino-Camelia
- G. Amelino-Camelia
- G. Amelino-Camelia
- G. Amelino-Camelia
- G. Amelino-Camelia
- G. Amelino-Camelia
- G. Amelino-Camelia
- G. Amelino-Camelia
- G. Gelmini
- G. Kanbach
- G.I. Rubtsov
- G.T. Zatsepin
- G.W. Gibbons
- G.Y. Bogoslovsky
- H.B. Nielsen
- H.B. Nielsen
- H.B. Nielsen
- I.G. Mitrofanov
- J. Abraham
- J. Abraham
- J. Alfaro
- J. Carmona
- J. Carmona
- J. Collins
- J. Ellis
- J. Kelley
- J. Lukierski
- J. Magueijo
- J. Magueijo
- J. Petri
- J. Rembielinski
- J.D. Bjorken
- J.R. Ellis
- J.R. Ellis
- J.R. Ellis
- J.R. Ellis
- J.R. Ellis
- J.R. Ellis
- J.R. Ellis
- K. Greisen
- L. Garay
- L. Maccione
- L. Maccione
- L. Maccione
- L. Stodolsky
- L.B. RĂ©dei
- M. Bleicher
- M. Galaverni
- M. Galaverni
- M. Gasperini
- M. Gasperini
- M. Gasperini
- M. Gasperini
- M. Gasperini
- M. Gonzalez-Garcia
- M. Pospelov
- M. Takeda
- M.C. Weisskopf
- M.J. Longo
- N.E. Mavromatos
- P. Auger
- P. Auger
- P. Horava
- P.A. Bolokhov
- P.A. Bolokhov
- P.A.M. Dirac
- P.R. Phillips
- R. Abbasi
- R. Aloisio
- R. Balbinot
- R. Gambini
- R. Parentani
- R. Protheroe
- R. Schutzhold
- R.C. Myers
- R.J. Gleiser
- S. Chadha
- S. Groot Nibbelink
- S. Hossenfelder
- S. Judes
- S. Liberati
- S. Liberati
- S. Liberati
- S. Liberati
- S. Perlmutter
- S. Scully
- S. Sonego
- S. Weinberg
- S. Weinfurtner
- S. Weinfurtner
- S.M. Carroll
- S.R. Coleman
- S.R. Coleman
- S.W. Barwick
- T. Damour
- T. Jacobson
- T. Jacobson
- T. Jacobson
- T. Jacobson
- T.A. Jacobson
- T.G. Pavlopoulos
- T.P. Sotiriou
- V. Baccetti
- V. Baccetti
- V.A. Kostelecky
- V.A. Kostelecky
- V.A. Kostelecky
- W. Coburn
- W. Huelsnitz
- W. Ignatowsky von
- W. Ignatowsky von
- W. Ignatowsky von
- W. Ignatowsky von
- W. Ignatowsky von
- W. Kluzniak
- W. Unruh
- W.H. McMaster
- W.M. Yao
- Y.-Z. Fan
- Publication venue
- 'Springer Science and Business Media LLC'
- Publication date
- 19/07/2012
- Field of study
Analogue models of gravity have provided an experimentally realizable test
field for our ideas on quantum field theory in curved spacetimes but they have
also inspired the investigation of possible departures from exact Lorentz
invariance at microscopic scales. In this role they have joined, and sometime
anticipated, several quantum gravity models characterized by Lorentz breaking
phenomenology. A crucial difference between these speculations and other ones
associated to quantum gravity scenarios, is the possibility to carry out
observational and experimental tests which have nowadays led to a broad range
of constraints on departures from Lorentz invariance. We shall review here the
effective field theory approach to Lorentz breaking in the matter sector,
present the constraints provided by the available observations and finally
discuss the implications of the persisting uncertainty on the composition of
the ultra high energy cosmic rays for the constraints on the higher order,
analogue gravity inspired, Lorentz violations.Comment: 47 pages, 4 figures. Lecture Notes for the IX SIGRAV School on
"Analogue Gravity", Como (Italy), May 2011. V.3. Typo corrected, references
adde
Trans-ancestry genome-wide association study identifies 12 genetic loci influencing blood pressure and implicates a role for DNA methylation
- Author
- L.D. do
- S. das
- Abbott J.
- Adair L.S.
- Afzal U.
- Ahluwalia T.S.
- Ahmed A.
- Ahsan H.
- Aits I.
- Akiyama K.
- Allayee H.
- Alves A.D.C.
- Asif R.
- Asselbergs F.W.
- Aung T.
- Barroso I.
- BIOS-consortium
- Bjonnes A.
- Bonder M.J.
- Braun T.R.
- Bryan M.S.
- Cai H.
- Campanella G.
- CARDIo GRAMplusCD
- Chadeau-Hyam M.
- Chambers J.C.
- Chang L.C.
- Chen C.H.
- Chen P.
- Chen Y.T.
- Cheng C.Y.
- Chong Y.S.
- Ciullo M.
- Clarke R.
- Collins R.
- Courtney R.
- Dam R.M. van
- Danesh J.
- Davies G.
- Deary I.J.
- Dehghan A.
- Delgado G.
- Deloukas P.
- Doevendans P.A.
- Dorajoo R.
- Drong A.W.
- Edwards T.L.
- Elliott P.
- Esko T.
- Franco O.H.
- Franke A.
- Franke L.
- Franks P.W.
- Franks S.
- Friedlander Y.
- Gansevoort R.T.
- Gao Y.T.
- Gieger C.
- Gilst W.H. van
- Go M.J.
- Grammer T.B.
- Grarup N.
- Grewal J.
- Gross M.D.
- Gu D.F.
- Guo Z.R.
- Hansen T.
- Harris S.E.
- Harst P. van der
- Hartiala J.
- Hartikainen A.L.
- Hazen S.L.
- He J.
- Heijman B.T.
- Heng C.K.
- Hixson J.E.
- Hofman A.
- Holbrook J.D.
- Hopewell J.C.
- Hsu C.
- Huang W.
- Husemoen L.L.N.
- Hwang J.Y.
- Ichihara S.
- Igase M.
- InterAct Consortium
- Isaacs A.
- Isono M.
- Jarvelin M.R.
- Jorgensen T.
- Jukema J.W.
- Justesen J.M.
- Kahonen M.
- Kajio H.
- Kasela S.
- Kasturiratne A.
- Kato N.
- Katsuy T.
- Kelly T.N.
- Khor C.C.
- Kibriya M.G.
- Kim B.J.
- Kim Y.J.
- Kim Y.K.
- Kishimoto M.
- Kivimaki M.
- Kleber M.E.
- Kleinjans J.C.S.
- Koh W.P.
- Kohara K.
- Koivula R.W.
- Kooner J.S.
- Kumari M.
- Kwek K.
- Kyrtopoulos S.A.
- Leach I.M.
- Lee J.
- Lee J.Y.
- Lee N.R.
- Lehne B.
- Lehtimaki T.
- Li H.X.
- Liao J.M.
- Lieb W.
- Liewald D.C.M.
- LifeLines Cohort Study
- Lin X.
- Linneberg A.
- Liu J.J.
- Loh M.
- Luan J.
- Lyytikainen L.P.
- Marz W.
- Matsubara T.
- Matsushita Y.
- McCarthy M.I.
- Meitinger T.
- Metspalu A.
- Meurs J.B.J. van
- Mihailov E.
- Miki T.
- Milani L.
- Mills R.
- Mohlke K.L.
- Mok Z.Y.
- Mononen N.
- Muller-Nurasyid M.
- Nabika T.
- Nakashima E.
- Nakatochi M.
- Ng H.K.
- Nguyen Q.N.
- Nikus K.
- Nutile T.
- Ohkubo T.
- Ohnaka K.
- Parish S.
- Paternoster L.
- Pedersen O.
- Peng H.
- Pereira M.A.
- Peters A.
- Pham S.T.
- Pinidiyapathirage M.J.
- Postmus I.
- Rahman M.
- Raitakari O.T.
- Rakugi H.
- Rolandsson O.
- Rozario M.A.
- Ruggiero D.
- Sala C.F.
- Saleheen D.
- Samani N.J.
- Sanghera D.K.
- Sapari N.S.
- Sarju R.
- Saxena R.
- Scott J.
- Scott R.A.
- Scott W.R.
- Shimokawa K.
- Shu X.O.
- Snieder H.
- Soong R.
- Sorensen T.I.A.
- Sorice R.
- Sparso T.
- Spiering W.
- Starr J.M.
- Stewart A.F.R.
- Stolk L.
- Stott D.J.
- Stram D.O.
- Sugiyama T.
- Szymczak S.
- Tabara Y.
- Tai E.S.
- Takayanagi R.
- Takeuchi F.
- Tan S.T.
- Tang W.H.W.
- Teh A.L.
- Teo Y.Y.
- Tong L.
- Toniolo D.
- Tragante V.
- Traglia M.
- Trompet S.
- Turjanmaa V.
- Ueshima H.
- Uitterlinden A.G.
- Umemura S.
- Vaarasmaki M.
- Veldhuisen D.J. van
- Verweij N.
- Viikari J.S.
- Vineis P.
- Vithana E.
- Wahl S.
- Waldenberger M.
- Wander G.S.
- Wang A.L.
- Wang X.
- Wang Y.Q.
- White J.
- Wickremasinghe A.R.
- Wijmenga C.
- Wilson R.
- Wolffenbuttel B.H.W.
- Wong T.Y.
- Wu J.Y.
- Wu Y.
- Xiang Y.B.
- Yamaguchi S.
- Yamamoto K.
- Ye X.W.
- Yokota M.
- Young R.D.
- Young T.L.
- Yuan J.M.
- Zhang W.H.
- Zhang Y.
- Zhang Y.H.
- Zheng W.
- Zhou X.Y.
- Zhu D.L.
- Publication venue
- 'Springer Science and Business Media LLC'
- Publication date
- 01/01/2015
- Field of study
We carried out a trans-ancestry genome-wide association and replication study of blood pressure phenotypes among up to 320,251 individuals of East Asian, European and South Asian ancestry. We find genetic variants at 12 new loci to be associated with blood pressure (P = 3.9 × 10-11 to 5.0 × 10-21). The sentinel blood pressure SNPs are enriched for association with DNA methylation at multiple nearby CpG sites, suggesting that, at some of the loci identified, DNA methylation may lie on the regulatory pathway linking sequence variation to blood pressure. The sentinel SNPs at the 12 new loci point to genes involved in vascular smooth muscle (IGFBP3, KCNK3, PDE3A and PRDM6) and renal (ARHGAP24, OSR1, SLC22A7 and TBX2) function. The new and known genetic variants predict increased left ventricular mass, circulating levels of NT-proBNP, and cardiovascular and all-cause mortality (P = 0.04 to 8.6 × 10-6). Our results provide new evidence for the role of DNA methylation in blood pressure regulation
The Sudbury Neutrino Observatory
- Author
- A DeKok
- A Hallin
- A Hamer
- A Hime
- A Myers
- A Roberge
- A Schuelke
- A.A Hamian
- A.B Knox
- A.B McDonald
- A.F McGirt
- A.L Bell
- A.L Carter
- A.P Ferraris
- A.R Smith
- A.T Noble
- A.W.P Poon
- Athanassopoulos
- Azriel Goldschmidt
- B Cleveland
- B Hollebone
- B Sur
- B.A Moffat
- B.C Robertson
- Bahcall
- Bahcall
- Bahcall
- Barber
- Bohren
- Bowler
- Bowler
- Brun
- C Alexander
- C Howard
- C Shewchuk
- C.A Duba
- C.A.W Hearns
- C.E Okada
- C.E Waltham
- C.J Jillings
- C.J Virtue
- C.K Hargrove
- C.W Nally
- Cleveland
- D Haslip
- D Kessler
- D Sinclair
- D Sweezey
- D.F Cowen
- D.L Cluff
- D.L Wark
- D.N Beck
- D.R Grant
- D.S McDonald
- Doucas
- E Bonvin
- E Gaudette
- E Saettler
- E.B Norman
- E.D Earle
- E.D Frank
- E.D Hallman
- E.P Korpach
- E.T.H Clifford
- E.W Beier
- Ernst-Ingo Esch
- F Dalnoki-Veress
- F Duncan
- F.M Newcomer
- F.W Dycus
- Fukuda
- G Aardsma
- G BĂŒhler
- G Doucas
- G Jonkmans
- G Laberge
- G Mayers
- G Milton
- G.G Miller
- G.T Ewan
- G.W Koehler
- Glashow
- Gribov
- H Heron
- H Mes
- H Seifert
- H.B Mak
- H.C Evans
- H.H Chen
- H.S Ng
- H.W Lee
- Hata
- Hilgenfeldt
- I Blevis
- I Levine
- I Zlimen
- J Bigu
- J Boger
- J Cameron
- J Farine
- J Gonzalez
- J Heise
- J Hewett
- J Karn
- J Law
- J Lyon
- J Roberts
- J.-X Wang
- J.B Wilhelmy
- J.C Barton
- J.C Cook
- J.D Anglin
- J.D Hepburn
- J.D MacArthur
- J.E Franklin
- J.F Wilkerson
- J.G Hykawy
- J.H.M Cowan
- J.J Simpson
- J.K Rowley
- J.M Anaya
- J.M Beck
- J.M Wouters
- J.R Klein
- J.R Leslie
- J.V Germani
- Jagam
- Jillings
- Jonkmans
- K Cameron
- K McFarlane
- K.M Heeger
- K.T Lesko
- Kubodera
- L.S Erhardt
- Liu
- M Bercovitch
- M Boulay
- M Dayon
- M Howe
- M Lay
- M Moorhead
- M O'Neill
- M Omori
- M Shatkay
- M Thorman
- M.-Q Liu
- M.C Browne
- M.C Chon
- M.C Moebus
- M.C.P Isaac
- M.G Bowler
- M.H Schwendener
- M.M Fowler
- M.M Lowry
- M.R Dragowsky
- M.S Neubauer
- M.W.E Smith
- N Tagg
- N West
- N.A Jelley
- N.W Tanner
- Newcomer
- P Green
- P Jagam
- P Purgalis
- P Skensved
- P Wittich
- P.J Doe
- P.J Harvey
- P.M Hart
- P.T Keener
- P.T Trent
- Poon
- Q.R Ahmad
- R Deal
- R Ford
- R Heaton
- R Kouzes
- R Michaud
- R Tafirout
- R.A Black
- R.C Allen
- R.G Stokstad
- R.G.H Robertson
- R.G.Van de Water
- R.H Hanson
- R.J Boardman
- R.J Komar
- R.J Pearce
- R.K Taplin
- R.L Hahn
- R.L Helmer
- R.L Stevenson
- R.Meijer Drees
- R.S Storey
- R.U Haq
- R.Van Berg
- R.W Ollerhead
- S Biller
- S Gil
- S Majerus
- S Noel
- S Turner
- S.J Brice
- S.R Elliott
- Sato
- Sur
- T Andersen
- T.D Steiger
- T.H Burritt
- T.J Bowles
- T.J Radcliffe
- T.Van Wechel
- V.M Novikov
- Vidyakin
- W Frati
- W Locke
- W McLatchie
- W.A Teasdale
- W.F Davidson
- Waltham
- Wang
- Weinberg
- Wojcik
- Wolfenstein
- X Chen
- X Zhu
- Y Kajiyama
- Y.D Chan
- Publication venue
- 'Elsevier BV'
- Publication date
- 03/11/1999
- Field of study
The Sudbury Neutrino Observatory is a second generation water Cherenkov
detector designed to determine whether the currently observed solar neutrino
deficit is a result of neutrino oscillations. The detector is unique in its use
of D2O as a detection medium, permitting it to make a solar model-independent
test of the neutrino oscillation hypothesis by comparison of the charged- and
neutral-current interaction rates. In this paper the physical properties,
construction, and preliminary operation of the Sudbury Neutrino Observatory are
described. Data and predicted operating parameters are provided whenever
possible.Comment: 58 pages, 12 figures, submitted to Nucl. Inst. Meth. Uses elsart and
epsf style files. For additional information about SNO see
http://www.sno.phy.queensu.ca . This version has some new reference
Narrowband Searches for Continuous and Long-duration Transient Gravitational Waves from Known Pulsars in the LIGO-Virgo Third Observing Run
- Author
- Abbott R.
- Abbott T.D.
- Acernese F.
- Ackley K.
- Adams C.
- Adhikari N.
- Adhikari R.X.
- Adya V.B.
- Affeldt C.
- Agarwal D.
- Agathos M.
- Agatsuma K.
- Aggarwal N.
- Aguiar O.D.
- Aiello L.
- Ain A.
- Ajith P.
- Akutsu T.
- Albanesi S.
- Allocca A.
- Altin P.A.
- Amato A.
- Anand C.
- Anand S.
- Ananyeva A.
- Anderson S.B.
- Anderson W.G.
- Ando M.
- Andrade T.
- Andres N.
- AndriÄ T.
- Angelova S.V.
- Ansoldi S.
- Antelis J.M.
- Antier S.
- Antonopoulou D.
- Appert S.
- Arai K.
- Arai K.
- Arai Y.
- Araki S.
- Araya A.
- Araya M.C.
- Areeda J.S.
- Arellano F.E.P.
- Aritomi N.
- Arnaud N.
- Aronson S.M.
- Arun K.G.
- Arzoumanian Z.
- ArĂšne M.
- Asada H.
- Asali Y.
- Ashton G.
- Aso Y.
- Assiduo M.
- Aston S.M.
- Astone P.
- Aubin F.
- Austin C.
- Babak S.
- Badaracco F.
- Bader M.K.M.
- Badger C.
- Bae S.
- Bae Y.
- Baer A.M.
- Bagnasco S.
- Bai Y.
- Bailes M.
- Baiotti L.
- Baird J.
- Bajpai R.
- Ball M.
- Ballardin G.
- Ballmer S.W.
- Balsamo A.
- Baltus G.
- Banagiri S.
- Bankar D.
- Barayoga J.C.
- Barbieri C.
- Barish B.C.
- Barker D.
- Barneo P.
- Barone F.
- Barr B.
- Barsotti L.
- Barsuglia M.
- Barta D.
- Bartlett J.
- Barton M.A.
- Bartos I.
- Bassiri R.
- Basti A.
- Basu A.
- Bawaj M.
- Bayley J.C.
- Baylor A.C.
- Bazzan M.
- Bedakihale V.M.
- Bejger M.
- Belahcene I.
- Benedetto V.
- Beniwal D.
- Bennett T.F.
- Bentley J.D.
- Benyaala M.
- Bergamin F.
- Berger B.K.
- Bernuzzi S.
- Bersanetti D.
- Bertolini A.
- Betzwieser J.
- Beveridge D.
- Bhandare R.
- Bhardwaj U.
- Bhattacharjee D.
- Bhaumik S.
- Bilenko I.A.
- Billingsley G.
- Bini S.
- Birney R.
- Birnholtz O.
- Biscans S.
- Bischi M.
- Biscoveanu S.
- Bisht A.
- Biswas B.
- Bitossi M.
- Bizouard M.-A.
- Blackburn J.K.
- Blair C.D.
- Blair D.G.
- Blair R.M.
- Bobba F.
- Bode N.
- Boer M.
- Bogaert G.
- Bogdanov S.
- Boldrini M.
- Bonavena L.D.
- Bondu F.
- Bonilla E.
- Bonnand R.
- Booker P.
- Boom B.A.
- Bork R.
- Boschi V.
- Bose N.
- Bose S.
- Bossilkov V.
- Boudart V.
- Bouffanais Y.
- Bozzi A.
- Bradaschia C.
- Brady P.R.
- Bramley A.
- Branch A.
- Branchesi M.
- Brau J.E.
- Breschi M.
- Briant T.
- Briggs J.H.
- Brillet A.
- Brinkmann M.
- Brockill P.
- Brooks A.F.
- Brooks J.
- Brown D.D.
- Brunett S.
- Bruno G.
- Bruntz R.
- Bryant J.
- Bulik T.
- Bulten H.J.
- Buonanno A.
- Buscicchio R.
- Buskulic D.
- Bustillo J.C.
- Buy C.
- Byer R.L.
- BĂ©csy B.
- Cadonati L.
- Cagnoli G.
- Cahillane C.
- Callaghan J.D.
- Callister T.A.
- Calloni E.
- Cameron J.
- Camp J.B.
- Canepa M.
- Canevarolo S.
- Cannavacciuolo M.
- Cannon K.C.
- Canton T.D.
- Cao H.
- Cao Z.
- Capocasa E.
- Capote E.
- Carapella G.
- Carbognani F.
- Carlin J.B.
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- Publication venue
- London : Institute of Physics Publ.
- Publication date
- 01/01/2022
- Field of study
Isolated neutron stars that are asymmetric with respect to their spin axis are possible sources of detectable continuous gravitational waves. This paper presents a fully coherent search for such signals from eighteen pulsars in data from LIGO and Virgo's third observing run (O3). For known pulsars, efficient and sensitive matched-filter searches can be carried out if one assumes the gravitational radiation is phase-locked to the electromagnetic emission. In the search presented here, we relax this assumption and allow both the frequency and the time derivative of the frequency of the gravitational waves to vary in a small range around those inferred from electromagnetic observations. We find no evidence for continuous gravitational waves, and set upper limits on the strain amplitude for each target. These limits are more constraining for seven of the targets than the spin-down limit defined by ascribing all rotational energy loss to gravitational radiation. In an additional search, we look in O3 data for long-duration (hours-months) transient gravitational waves in the aftermath of pulsar glitches for six targets with a total of nine glitches. We report two marginal outliers from this search, but find no clear evidence for such emission either. The resulting duration-dependent strain upper limits do not surpass indirect energy constraints for any of these targets. © 2022. The Author(s). Published by the American Astronomical Society
Search for Gravitational Waves Associated with Gamma-Ray Bursts Detected by Fermi and Swift during the LIGO-Virgo Run O3b
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- Zucker M.E.
- Zweizig J.
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- London : Institute of Physics Publ.
- Publication date
- 01/01/2022
- Field of study
We search for gravitational-wave signals associated with gamma-ray bursts (GRBs) detected by the Fermi and Swift satellites during the second half of the third observing run of Advanced LIGO and Advanced Virgo (2019 November 1 15:00 UTC-2020 March 27 17:00 UTC). We conduct two independent searches: A generic gravitational-wave transients search to analyze 86 GRBs and an analysis to target binary mergers with at least one neutron star as short GRB progenitors for 17 events. We find no significant evidence for gravitational-wave signals associated with any of these GRBs. A weighted binomial test of the combined results finds no evidence for subthreshold gravitational-wave signals associated with this GRB ensemble either. We use several source types and signal morphologies during the searches, resulting in lower bounds on the estimated distance to each GRB. Finally, we constrain the population of low-luminosity short GRBs using results from the first to the third observing runs of Advanced LIGO and Advanced Virgo. The resulting population is in accordance with the local binary neutron star merger rate. © 2022. The Author(s). Published by the American Astronomical Society
Immunohistochemical detection of virus through its nuclear cytopathic effect in idiopathic interstitial pneumonia other than acute exacerbation
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- Publication date
- Field of study
Dissociative Symptoms and Reported Trauma Among Patients with Spirit Possession and Matched Healthy Controls in Uganda
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- A. Boddy
- A. Crescenzi
- American Psychiatric Association (APA)
- B.A. Van der Kolk
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- C. Ward
- D. Hollan
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- E. Bourguignon
- E. Bourguignon
- E. Cardeña
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- E. Somer
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- E.R.S. Nijenhuis
- E.R.S. Nijenhuis
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- E.R.S. Nijenhuis
- Ellert Nijenhuis
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- Hajo B. P. E. Gernaat
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- M. Sabin
- M. Van Duijl
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- M. Van Ommeren
- M.C. OâConnel
- M.J. Norusis
- Marjolein van Duijl
- P. Antze
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- P. Vinck
- P.J. Bracken
- P.J. Guarnaccia
- R. Lewis-Fernandez
- R. Lewis-Fernandez
- R. Lewis-FernĂĄndez
- R. Seligman
- R. Seligman
- R.F. Mollica
- R.J. Castillo
- R.J. Castillo
- S. Boon
- T.H. Diseth
- V. Igreja
- V. Sar
- V. Sar
- World Health Organization
- World Medical Assembly
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- 'Springer Science and Business Media LLC'
- Publication date
- Field of study
Search for gravitational-wave transients associated with magnetar bursts in advanced LIGO and advanced Virgo data from the third observing run
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- Yeh S.-W
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- Ying M
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- Zhu Z.-H
- Zucker M.E
- Zweizig J
- Publication venue
- American Astronomical Society
- Publication date
- 01/01/2024
- Field of study
Gravitational waves are expected to be produced from neutron star oscillations associated with magnetar giant f lares and short bursts. We present the results of a search for short-duration (milliseconds to seconds) and longduration (âŒ100 s) transient gravitational waves from 13 magnetar short bursts observed during Advanced LIGO, Advanced Virgo, and KAGRAâs third observation run. These 13 bursts come from two magnetars, SGR1935 +2154 and SwiftJ1818.0â1607. We also include three other electromagnetic burst events detected by FermiGBM which were identified as likely coming from one or more magnetars, but they have no association with a known magnetar. No magnetar giant flares were detected during the analysis period. We find no evidence of gravitational waves associated with any of these 16 bursts. We place upper limits on the rms of the integrated incident gravitational-wave strain that reach 3.6 Ă 10âÂČÂł Hz at 100 Hz for the short-duration search and 1.1 Ă10âÂČÂČ Hz at 450 Hz for the long-duration search. For a ringdown signal at 1590 Hz targeted by the short-duration search the limit is set to 2.3 Ă 10âÂČÂČ Hz. Using the estimated distance to each magnetar, we derive upper limits upper limits on the emitted gravitational-wave energy of 1.5 Ă 1044 erg (1.0 Ă 1044 erg) for SGR 1935+2154 and 9.4 Ă 10^43 erg (1.3 Ă 1044 erg) for Swift J1818.0â1607, for the short-duration (long-duration) search. Assuming isotropic emission of electromagnetic radiation of the burst ïŹuences, we constrain the ratio of gravitational-wave energy to electromagnetic energy for bursts from SGR 1935+2154 with the available ïŹuence information. The lowest of these ratios is 4.5 Ă 103
A joint Fermi-GBM and Swift-BAT analysis of gravitational-wave candidates from the third gravitational-wave observing run
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- Publication venue
- American Astronomical Society
- Publication date
- 01/04/2024
- Field of study
We present Fermi Gamma-ray Burst Monitor (Fermi-GBM) and Swift Burst Alert Telescope (Swift-BAT) searches for gamma-ray/X-ray counterparts to gravitational-wave (GW) candidate events identified during the third observing run of the Advanced LIGO and Advanced Virgo detectors. Using Fermi-GBM onboard triggers and subthreshold gamma-ray burst (GRB) candidates found in the Fermi-GBM ground analyses, the Targeted Search and the Untargeted Search, we investigate whether there are any coincident GRBs associated with the GWs. We also search the Swift-BAT rate data around the GW times to determine whether a GRB counterpart is present. No counterparts are found. Using both the Fermi-GBM Targeted Search and the Swift-BAT search, we calculate flux upper limits and present joint upper limits on the gamma-ray luminosity of each GW. Given these limits, we constrain theoretical models for the emission of gamma rays from binary black hole mergers
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