Detection of scalar fields by extreme mass ratio inspirals with a Kerr black hole

被引:11
作者
Guo, Hong [1 ,2 ]
Liu, Yunqi [1 ,3 ]
Zhang, Chao [4 ]
Gong, Yungui [4 ]
Qian, Wei-Liang [1 ,5 ,6 ]
Yue, Rui-Hong [1 ]
机构
[1] Yangzhou Univ, Coll Phys Sci & Technol, Ctr Gravitat & Cosmol, Yangzhou 225009, Jiangsu, Peoples R China
[2] Shanghai Jiao Tong Univ, Shanghai Frontier Res Ctr Gravitat Wave Detect, Shanghai 200240, Peoples R China
[3] Shanghai Jiao Tong Univ, Sch Aeronaut & Astronaut, Shanghai 200240, Peoples R China
[4] Huazhong Univ Sci & Technol, Sch Phys, Wuhan 430074, Hubei, Peoples R China
[5] Univ Sao Paulo, Escola Engn Lorena, BR-12602810 Lorena, SP, Brazil
[6] Univ Estadual Paulista, Fac Engn Guaratingueta, BR-12516410 Guaratingueta, SP, Brazil
基金
巴西圣保罗研究基金会; 中国国家自然科学基金;
关键词
BRANS-DICKE THEORY; GRAVITATIONAL-WAVES; SPACE; PERTURBATIONS; PHYSICS; LISA;
D O I
10.1103/PhysRevD.106.024047
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
We study extreme mass ratio inspirals occurring in modified gravity, for which the system is modeled by a small compact object with scalar charge spiraling into a supermassive Kerr black hole. Besides the tensorial gravitational waves arising from the metric perturbations, radiation is also induced by the scalar field. The relevant metric and scalar perturbations are triggered by the orbital motion of the small object, which give rise to a system of inhomogeneous differential equations under the adiabatic approximation. Such a system of equations is then solved numerically using a Green???s function furnished by the solutions of the corresponding homogeneous equations. To explore the present scenario from an observational perspective, we investigate how the pertinent observables are dependent on specific spacetime configurations. In this regard, the energy fluxes and the gravitational-wave dephasing accumulated during the process are evaluated, as functions of the scalar charge, mass ratio, and spin of the central supermassive black hole. In particular, the presence of additional scalar emission leads to a more significant rate of overall energy loss which, in turn, decreases the total number of orbital cycles before the small object plunges into the central black hole. Moreover, for a central black hole with a higher spin, the imprints of the scalar charge on the resultant gravitational radiation are found to be more significant, which indicates the possibility of detecting the scalar charge.
引用
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页数:13
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共 81 条
  • [1] Aasi J., 2015, Classical Quantum Gravity, V32, DOI DOI 10.1088/0264-9381/32/7/074001
  • [2] GWTC-1: A Gravitational-Wave Transient Catalog of Compact Binary Mergers Observed by LIGO and Virgo during the First and Second Observing Runs
    Abbott, B. P.
    Abbott, R.
    Abbott, T. D.
    Abraham, S.
    Acernese, F.
    Ackley, K.
    Adams, C.
    Adhikari, R. X.
    Adya, V. B.
    Affeldt, C.
    Agathos, M.
    Agatsuma, K.
    Aggarwal, N.
    Aguiar, O. D.
    Aiello, L.
    Ain, A.
    Ajith, P.
    Allen, G.
    Allocca, A.
    Aloy, M. A.
    Altin, P. A.
    Amato, A.
    Ananyeva, A.
    Anderson, S. B.
    Anderson, W. G.
    Angelova, S., V
    Antier, S.
    Appert, S.
    Arai, K.
    Araya, M. C.
    Areeda, J. S.
    Arene, M.
    Arnaud, N.
    Arun, K. G.
    Ascenzi, S.
    Ashton, G.
    Aston, S. M.
    Astone, P.
    Aubin, F.
    Aufmuth, P.
    AultONeal, K.
    Austin, C.
    Avendano, V
    Avila-Alvarez, A.
    Babak, S.
    Bacon, P.
    Badaracco, F.
    Bader, M. K. M.
    Bae, S.
    Baker, P. T.
    [J]. PHYSICAL REVIEW X, 2019, 9 (03)
  • [3] Observation of Gravitational Waves from a Binary Black Hole Merger
    Abbott, B. P.
    Abbott, R.
    Abbott, T. D.
    Abernathy, M. R.
    Acernese, F.
    Ackley, K.
    Adams, C.
    Adams, T.
    Addesso, P.
    Adhikari, R. X.
    Adya, V. B.
    Affeldt, C.
    Agathos, M.
    Agatsuma, K.
    Aggarwal, N.
    Aguiar, O. D.
    Aiello, L.
    Ain, A.
    Ajith, P.
    Allen, B.
    Allocca, A.
    Altin, P. A.
    Anderson, S. B.
    Anderson, W. G.
    Arai, K.
    Arain, M. A.
    Araya, M. C.
    Arceneaux, C. C.
    Areeda, J. S.
    Arnaud, N.
    Arun, K. G.
    Ascenzi, S.
    Ashton, G.
    Ast, M.
    Aston, S. M.
    Astone, P.
    Aufmuth, P.
    Aulbert, C.
    Babak, S.
    Bacon, P.
    Bader, M. K. M.
    Baker, P. T.
    Baldaccini, F.
    Ballardin, G.
    Ballmer, S. W.
    Barayoga, J. C.
    Barclay, S. E.
    Barish, B. C.
    Barker, D.
    Barone, F.
    [J]. PHYSICAL REVIEW LETTERS, 2016, 116 (06)
  • [4] GWTC-2: Compact Binary Coalescences Observed by LIGO and Virgo during the First Half of the Third Observing Run
    Abbott, R.
    Abbott, T. D.
    Abraham, S.
    Acernese, F.
    Ackley, K.
    Adams, A.
    Adams, C.
    Adhikari, R. X.
    Adya, V. B.
    Affeldt, C.
    Agathos, M.
    Agatsuma, K.
    Aggarwal, N.
    Aguiar, O. D.
    Aiello, L.
    Ain, A.
    Ajith, P.
    Akcay, S.
    Allen, G.
    Allocca, A.
    Altin, P. A.
    Amato, A.
    Anand, S.
    Ananyeva, A.
    Anderson, S. B.
    Anderson, W. G.
    Angelova, S., V
    Ansoldi, S.
    Antelis, J. M.
    Antier, S.
    Appert, S.
    Arai, K.
    Araya, M. C.
    Areeda, J. S.
    Arene, M.
    Arnaud, N.
    Aronson, S. M.
    Arun, K. G.
    Asali, Y.
    Ascenzi, S.
    Ashton, G.
    Aston, S. M.
    Astone, P.
    Aubin, F.
    Aufmuth, P.
    AultONeal, K.
    Austin, C.
    Avendano, V
    Babak, S.
    Badaracco, F.
    [J]. PHYSICAL REVIEW X, 2021, 11 (02)
  • [5] Abbott R., arXiv
  • [6] Advanced Virgo: a second-generation interferometric gravitational wave detector
    Acernese, F.
    Agathos, M.
    Agatsuma, K.
    Aisa, D.
    Allemandou, N.
    Allocca, A.
    Amarni, J.
    Astone, P.
    Balestri, G.
    Ballardin, G.
    Barone, F.
    Baronick, J-P
    Barsuglia, M.
    Basti, A.
    Basti, F.
    Bauer, Th S.
    Bavigadda, V.
    Bejger, M.
    Beker, M. G.
    Belczynski, C.
    Bersanetti, D.
    Bertolini, A.
    Bitossi, M.
    Bizouard, M. A.
    Bloemen, S.
    Blom, M.
    Boer, M.
    Bogaert, G.
    Bondi, D.
    Bondu, F.
    Bonelli, L.
    Bonnand, R.
    Boschi, V.
    Bosi, L.
    Bouedo, T.
    Bradaschia, C.
    Branchesi, M.
    Briant, T.
    Brillet, A.
    Brisson, V.
    Bulik, T.
    Bulten, H. J.
    Buskulic, D.
    Buy, C.
    Cagnoli, G.
    Calloni, E.
    Campeggi, C.
    Canuel, B.
    Carbognani, F.
    Cavalier, F.
    [J]. CLASSICAL AND QUANTUM GRAVITY, 2015, 32 (02)
  • [7] Gravitational radiation from compact binary systems in the massive Brans-Dicke theory of gravity
    Alsing, Justin
    Berti, Emanuele
    Will, Clifford M.
    Zaglauer, Helmut
    [J]. PHYSICAL REVIEW D, 2012, 85 (06):
  • [8] [Anonymous], Black Hole Perturbation Toolkit
  • [9] [Anonymous], ARXIV170200786
  • [10] A Massive Pulsar in a Compact Relativistic Binary
    Antoniadis, John
    Freire, Paulo C. C.
    Wex, Norbert
    Tauris, Thomas M.
    Lynch, Ryan S.
    van Kerkwijk, Marten H.
    Kramer, Michael
    Bassa, Cees
    Dhillon, Vik S.
    Driebe, Thomas
    Hessels, Jason W. T.
    Kaspi, Victoria M.
    Kondratiev, Vladislav I.
    Langer, Norbert
    Marsh, Thomas R.
    McLaughlin, Maura A.
    Pennucci, Timothy T.
    Ransom, Scott M.
    Stairs, Ingrid H.
    van Leeuwen, Joeri
    Verbiest, Joris P. W.
    Whelan, David G.
    [J]. SCIENCE, 2013, 340 (6131) : 448