$\require{mediawiki-texvc}$

연합인증

연합인증 가입 기관의 연구자들은 소속기관의 인증정보(ID와 암호)를 이용해 다른 대학, 연구기관, 서비스 공급자의 다양한 온라인 자원과 연구 데이터를 이용할 수 있습니다.

이는 여행자가 자국에서 발행 받은 여권으로 세계 각국을 자유롭게 여행할 수 있는 것과 같습니다.

연합인증으로 이용이 가능한 서비스는 NTIS, DataON, Edison, Kafe, Webinar 등이 있습니다.

한번의 인증절차만으로 연합인증 가입 서비스에 추가 로그인 없이 이용이 가능합니다.

다만, 연합인증을 위해서는 최초 1회만 인증 절차가 필요합니다. (회원이 아닐 경우 회원 가입이 필요합니다.)

연합인증 절차는 다음과 같습니다.

최초이용시에는
ScienceON에 로그인 → 연합인증 서비스 접속 → 로그인 (본인 확인 또는 회원가입) → 서비스 이용

그 이후에는
ScienceON 로그인 → 연합인증 서비스 접속 → 서비스 이용

연합인증을 활용하시면 KISTI가 제공하는 다양한 서비스를 편리하게 이용하실 수 있습니다.

Observing gravitational-wave transient GW150914 with minimal assumptions 원문보기

Physical review. D, v.93 no.12, 2016년, pp.122004 -   

Abbott, B. P. (California Institute of Technology) ,  Abbott, R. (California Institute of Technology) ,  Abbott, T. D. (Louisiana State University) ,  Abernathy, M. R. (California Institute of Technology) ,  Acernese, F. (Università) ,  Ackley, K. (di Salerno) ,  Adams, C. (University of Florida) ,  Adams, T. (LIGO Livingston Observatory) ,  Addesso, P. (Université) ,  Adhikari, R. X. (Savoie Mont Blanc) ,  Adya, V. B. (Università) ,  Affeldt, C. (di Salerno) ,  Agathos, M. (California Institute of Technology) ,  Agatsuma, K. (Albert-Einstein-Institut) ,  Aggarwal, N. (Albert-Einstein-Institut) ,  Aguiar, O. D. (Nikhef) ,  Aiello, L. (Nikhef) ,  Ain, A. (Massachusetts Institute of Technology) ,  Ajith, P. (Instituto Nacional de Pesquisas Espaciais) ,  Allen, B. (Gran Sasso Science Institute) ,  Allocca, A. (Inter-University Centre for Astronomy and Astrophysics) ,  Altin, P. A. (Tata Institute of Fundamental Research) ,  Anderson, S. B. (Albert-Einstein-Institut) ,  Anderson, W. G. (Università) ,  Arai, K. (di Pisa) ,  Araya, M. C. (Australian National University) ,  Arceneaux, C. C. (California Institute of Technology) ,  Areeda, J. S. (University of Wisconsin-Milwaukee) ,  Arnaud, N. (California Institute of Technology) ,  Arun, K. G. (California Institute of Technology) ,  Ascenzi, S. (The University of Mississippi) ,  Ashton, G. (California State University Fullerton) ,  Ast, M. (Université) ,  Aston, S. M. (Paris-Saclay) ,  Astone, P. (Chennai Mathematical Institute) ,  Aufmuth, P. (Universit&a) ,  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. ,  Barr, B. ,  Barsotti, L. ,  Barsuglia, M. ,  Barta, D. ,  Bartlett, J. ,  Bartos, I. ,  Bassiri, R. ,  Basti, A. ,  Batch, J. C. ,  Baune, C. ,  Bavigadda, V. ,  Bazzan, M. ,  Behnke, B. ,  Bejger, M. ,  Bell, A. S. ,  Bell, C. J. ,  Berger, B. K. ,  Bergman, J. ,  Bergmann, G. ,  Berry, C. P. L. ,  Bersan

Abstract AI-Helper 아이콘AI-Helper

The gravitational-wave signal GW150914 was first identified on September 14, 2015, by searches for short-duration gravitational-wave transients. These searches identify time-correlated transients in multiple detectors with minimal assumptions about the signal morphology, allowing them to be sensitiv...

참고문헌 (47)

  1. Aasi, J, Abbott, B P, Abbott, R, Abbott, T, Abernathy, M R, Ackley, K, Adams, C, Adams, T, Addesso, P, Adhikari, R X, Adya, V, Affeldt, C, Aggarwal, N, Aguiar, O D, Ain, A, Ajith, P, Alemic, A, Allen, B, Amariutei, D, Anderson, S B, Anderson, W G, Arai, K, Araya, M C, Arceneaux, C, Areeda, J S, Ashton, G, Ast, S, Aston, S M, Aufmuth, P, Aulbert, C, Aylott, B E, Babak, S, Baker, P T, Ballmer, S W, Barayoga, J C, Barbet, M, Barclay, S, Barish, B C, Barker, D, Barr, B, Barsotti, L, Bartlett, J, Barton, M A, Bartos, I, Bassiri, R, Batch, J C, Baune, C, Behnke, B, Bell, A S, Bell, C, Benacquista, M, Bergman, J, Bergmann, G, Berry, C P L, Betzwieser, J, Bhagwat, S, Bhandare, R, Bilenko, I A, Billingsley, G, Birch, J, Biscans, S, Biwer, C, Blackburn, J K, Blackburn, L, Blair, C D, Blair, D, Bock, O, Bodiya, T P, Bojtos, P, Bond, C, Bork, R, Born, M, Bose, Sukanta, Brady, P R, Braginsky, V B, Brau, J E, Bridges, D O, . Advanced LIGO. Classical and quantum gravity, vol.32, no.7, 074001-.

  2. 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., 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., Barr, B., Barsotti, L., Barsuglia, M., Barta, D., Bartlett, J., Bartos, I., Bassiri, R., Basti, A., Batch, J. C., Baune, C., Bavigadda, V., Bazzan, M., Behnke, B., Bejger, M., Bell, A. S., Bell, C. J., Berger, B. K., Bergman, J., Bergmann, G., Berry, C. P. L., Bersan. GW150914: The Advanced LIGO Detectors in the Era of First Discoveries. Physical review letters, vol.116, no.13, 131103-.

  3. Sitzungsberichte der Königlich Preußischen Akademie der Wissenschaften (Berlin) A. Einstein 1 688 1916 

  4. Sitzungsberichte der Königlich Preußischen Akademie der Wissenschaften (Berlin) A. Einstein 1 154 1918 

  5. Lück, H, Affeldt, C, Degallaix, J, Freise, A, Grote, H, Hewitson, M, Hild, S, Leong, J, Prijatelj, M, Strain, K A, Willke, B, Wittel, H, Danzmann, K. The upgrade of GEO 600. Journal of physics. Conference series, vol.228, no.1, 012012-.

  6. 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, Cavalieri, R, Cella, G, Cesarini, E, Mottin, E Chassande-, Chincarini, A, Chiummo, A, Chua, S, Cleva, F, Coccia, E, Cohadon, P-F, Colla, A, Colombini, M, Conte, A, Coulon, J-P, Cuoco, E, Dalmaz, A, D’Antonio, S, Dattilo, V, Davier, M, Day, R, Debreczeni, G, Degallaix, J, Deléglise, S, Pozzo, W Del, Dereli, H, . Advanced Virgo: a second-generation interferometric gravitational wave detector. Classical and quantum gravity, vol.32, no.2, 024001-.

  7. Aso, Yoichi, Michimura, Yuta, Somiya, Kentaro, Ando, Masaki, Miyakawa, Osamu, Sekiguchi, Takanori, Tatsumi, Daisuke, Yamamoto, Hiroaki. Interferometer design of the KAGRA gravitational wave detector. Physical review. D, Particles, fields, gravitation, and cosmology, vol.88, no.4, 043007-.

  8. 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., Ain, A., Ajith, P., Allen, B., Allocca, A., Altin, P. A., Amariutei, D. V., Anderson, S. B., Anderson, W. G., Arai, K., Araya, M. C., Arceneaux, C. C., Areeda, J. S., Arnaud, N., Arun, K. G., Ashton, G., Ast, M., Aston, S. M., Astone, P., Aufmuth, P., Aulbert, C., Babak, S., Baker, P. T., Baldaccini, F., Ballardin, G., Ballmer, S. W., Barayoga, J. C., Barclay, S. E., Barish, B. C., Barker, D., Barone, F., Barr, B., Barsotti, L., Barsuglia, M., Barta, D., Bartlett, J., Bartos, I., Bassiri, R., Basti, A., Batch, J. C., Baune, C., Bavigadda, V., Bazzan, M., Behnke, B., Bejger, M., Belczynski, C., Bell, A. S., Bell, C. J., Berger, B. K., Bergman, J., Bergmann, G., Berry, C. P. L., Bersanetti, D., Bertolini,. Prospects for Observing and Localizing Gravitational-Wave Transients with Advanced LIGO and Advanced Virgo. Living reviews in relativity, vol.19, no.1, 1-.

  9. The transient gravitational-wave sky. Classical and quantum gravity, vol.30, no.19, 193002-.

  10. Fryer, Chris L., New, Kimberly C. B.. Gravitational Waves from Gravitational Collapse. Living reviews in relativity, vol.14, no.1, 1-.

  11. Damour, Thibault, Vilenkin, Alexander. Gravitational radiation from cosmic (super)strings: Bursts, stochastic background, and observational windows. Physical review. D, Particles, fields, gravitation, and cosmology, vol.71, no.6, 063510-.

  12. 300 Years of Gravitation K. S. Thorne 1987 

  13. Flanagan, Éanna É., Hughes, Scott A.. Measuring gravitational waves from binary black hole coalescences. II. The waves’ information and its extraction, with and without templates. Physical review. D, Particles and fields, vol.57, no.8, 4566-4587.

  14. Aasi, J., Collaboration, LIGO Scientific Collaboration and Virgo. Search for gravitational radiation from intermediate mass black hole binaries in data from the second LIGO-Virgo joint science run (15 pages). Physical review. D, Particles, fields, gravitation, and cosmology, vol.89, no.12, 122003-.

  15. Mohapatra, Satya, Cadonati, Laura, Caudill, Sarah, Clark, James, Hanna, Chad, Klimenko, Sergey, Pankow, Chris, Vaulin, Ruslan, Vedovato, Gabriele, Vitale, Salvatore. Sensitivity comparison of searches for binary black hole coalescences with ground-based gravitational-wave detectors. Physical review. D, Particles, fields, gravitation, and cosmology, vol.90, no.2, 022001-.

  16. Abadie, J., Abbott, B. P., Abbott, R., Abbott, T. D., Abernathy, M., Accadia, T., Acernese, F., Adams, C., Adhikari, R., Affeldt, C., Agathos, M., Agatsuma, K., Ajith, P., Allen, B., Amador Ceron, E., Amariutei, D., Anderson, S. B., Anderson, W. G., Arai, K., Arain, M. A., Araya, M. C., Aston, S. M., Astone, P., Atkinson, D., Aufmuth, P., Aulbert, C., Aylott, B. E., Babak, S., Baker, P., Ballardin, G., Ballmer, S., Barayoga, J. C. B., Barker, D., Barone, F., Barr, B., Barsotti, L., Barsuglia, M., Barton, M. A., Bartos, I., Bassiri, R., Bastarrika, M., Basti, A., Batch, J., Bauchrowitz, J., Bauer, Th. S., Bebronne, M., Beck, D., Behnke, B., Bejger, M., Beker, M. G., Bell, A. S., Belletoile, A., Belopolski, I., Benacquista, M., Berliner, J. M., Bertolini, A., Betzwieser, J., Beveridge, N., Beyersdorf, P. T., Bilenko, I. A., Billingsley, G., Birch, J., Biswas, R., Bitossi, M., Bizouard, M. A., Black, E., Blackburn, J. K., . All-sky search for gravitational-wave bursts in the second joint LIGO-Virgo run. Physical review. D, Particles, fields, gravitation, and cosmology, vol.85, no.12, 122007-.

  17. 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., Ain, A., Ajith, P., Allen, B., Allocca, A., Amariutei, D. V., Anderson, S. B., Anderson, W. G., Arai, K., Araya, M. C., Arceneaux, C. C., Areeda, J. S., Arnaud, N., Arun, K. G., Ashton, G., Ast, M., Aston, S. M., Astone, P., Aufmuth, P., Aulbert, C., Babak, S., Baker, P. T., Baldaccini, F., Ballardin, G., Ballmer, S. W., Barayoga, J. C., Barclay, S. E., Barish, B. C., Barker, D., Barone, F., Barr, B., Barsotti, L., Barsuglia, M., Barta, D., Bartlett, J., Bartos, I., Bassiri, R., Basti, A., Batch, J. C., Baune, C., Bavigadda, V., Bazzan, M., Behnke, B., Bejger, M., Belczynski, C., Bell, A. S., Bell, C. J., Berger, B. K., Bergman, J., Bergmann, G., Berry, C. P. L., Bersanetti, D., Bertolini, A., Betzwiese. All-sky search for long-duration gravitational wave transients with initial LIGO. Physical review. D, vol.93, no.4, 042005-.

  18. Abadie, J., Abbott, B. P., Abbott, R., Accadia, T., Acernese, F., Adhikari, R., Ajith, P., Allen, B., Allen, G., Amador Ceron, E., Amin, R. S., Anderson, S. B., Anderson, W. G., Antonucci, F., Arain, M. A., Araya, M., Arun, K. G., Aso, Y., Aston, S., Astone, P., Aufmuth, P., Aulbert, C., Babak, S., Baker, P., Ballardin, G., Ballmer, S., Barker, D., Barone, F., Barr, B., Barriga, P., Barsotti, L., Barsuglia, M., Barton, M. A., Bartos, I., Bassiri, R., Bastarrika, M., Bauer, Th. S., Behnke, B., Beker, M. G., Belletoile, A., Benacquista, M., Betzwieser, J., Beyersdorf, P. T., Bigotta, S., Bilenko, I. A., Billingsley, G., Birindelli, S., Biswas, R., Bizouard, M. A., Black, E., Blackburn, J. K., Blackburn, L., Blair, D., Bland, B., Blom, M., Boccara, C., Bock, O., Bodiya, T. P., Bondarescu, R., Bondu, F., Bonelli, L., Bonnand, R., Bork, R., Born, M., Bose, S., Bosi, L., Bouhou, B., Braccini, S., Bradaschia, C., Brady, P. R. All-sky search for gravitational-wave bursts in the first joint LIGO-GEO-Virgo run. Physical review. D, Particles, fields, gravitation, and cosmology, vol.81, no.10, 102001-.

  19. Thrane, Eric, Coughlin, Michael. Detecting Gravitation-Wave Transients at $ 5\sigma $ : A Hierarchical Approach. Physical review letters, vol.115, no.18, 181102-.

  20. Kanner, Jonah B., Littenberg, Tyson B., Cornish, Neil, Millhouse, Meg, Xhakaj, Enia, Salemi, Francesco, Drago, Marco, Vedovato, Gabriele, Klimenko, Sergey. Leveraging waveform complexity for confident detection of gravitational waves. Physical review. D, vol.93, no.2, 022002-.

  21. Klimenko, S., Vedovato, G., Drago, M., Salemi, F., Tiwari, V., Prodi, G. A., Lazzaro, C., Ackley, K., Tiwari, S., Da Silva, C. F., Mitselmakher, G.. Method for detection and reconstruction of gravitational wave transients with networks of advanced detectors. Physical review. D, vol.93, no.4, 042004-.

  22. Klimenko, S, Yakushin, I, Mercer, A, Mitselmakher, G. A coherent method for detection of gravitational wave bursts. Classical and quantum gravity, vol.25, no.11, 114029-.

  23. 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., Barr, B., Barsotti, L., Barsuglia, M., Barta, D., Bartlett, J., Barton, M. A., Bartos, I., Bassiri, R., Basti, A., Batch, J. C., Baune, C., Bavigadda, V., Bazzan, M., Behnke, B., Bejger, M., Belczynski, C., Bell, A. S., Bell, C. J., Berger, B. K., Bergm. Observation of Gravitational Waves from a Binary Black Hole Merger. Physical review letters, vol.116, no.6, 061102-.

  24. Cornish, Neil J, Littenberg, Tyson B. Bayeswave: Bayesian inference for gravitational wave bursts and instrument glitches. Classical and quantum gravity, vol.32, no.13, 135012-.

  25. Anderson, Warren G., Brady, Patrick R., Creighton, Jolien D. E., Flanagan, Éanna É.. Excess power statistic for detection of burst sources of gravitational radiation. Physical review. D, Particles and fields, vol.63, no.4, 042003-.

  26. Aasi, J., Collaboration, LIGO Scientific Collaboration and Virgo. Search for gravitational radiation from intermediate mass black hole binaries in data from the second LIGO-Virgo joint science run (15 pages). Physical review. D, Particles, fields, gravitation, and cosmology, vol.89, no.12, 122003-.

  27. Necula, V, Klimenko, S, Mitselmakher, G. Transient analysis with fast Wilson-Daubechies time-frequency transform. Journal of physics. Conference series, vol.363, no.1, 012032-.

  28. Klimenko, S., Mohanty, S., Rakhmanov, M., Mitselmakher, G.. Constraint likelihood analysis for a network of gravitational wave detectors. Physical review. D, Particles, fields, gravitation, and cosmology, vol.72, no.12, 122002-.

  29. Peters, P. C.. Gravitational Radiation and the Motion of Two Point Masses. Physical review, vol.136, no.b4, B1224-B1232.

  30. Chatterji, S, Blackburn, L, Martin, G, Katsavounidis, E. Multiresolution techniques for the detection of gravitational-wave bursts. Classical and quantum gravity, vol.21, no.20, S1809-S1818.

  31. Skilling, John. Nested sampling for general Bayesian computation. Bayesian analysis, vol.1, no.4,

  32. Veitch, J., Raymond, V., Farr, B., Farr, W., Graff, P., Vitale, S., Aylott, B., Blackburn, K., Christensen, N., Coughlin, M., Del Pozzo, W., Feroz, F., Gair, J., Haster, C.-J., Kalogera, V., Littenberg, T., Mandel, I., O’Shaughnessy, R., Pitkin, M., Rodriguez, C., Röver, C., Sidery, T., Smith, R., Van Der Sluys, M., Vecchio, A., Vousden, W., Wade, L.. Parameter estimation for compact binaries with ground-based gravitational-wave observations using the LALInference software library. Physical review. D, Particles, fields, gravitation, and cosmology, vol.91, no.4, 042003-.

  33. Littenberg, Tyson B., Cornish, Neil J.. Bayesian inference for spectral estimation of gravitational wave detector noise. Physical review. D, Particles, fields, gravitation, and cosmology, vol.91, no.8, 084034-.

  34. Taracchini, Andrea, Buonanno, Alessandra, Pan, Yi, Hinderer, Tanja, Boyle, Michael, Hemberger, Daniel A., Kidder, Lawrence E., Lovelace, Geoffrey, Mroué, Abdul H., Pfeiffer, Harald P., Scheel, Mark A., Szilágyi, Béla, Taylor, Nicholas W., Zenginoglu, Anil. Effective-one-body model for black-hole binaries with generic mass ratios and spins. Physical review. D, Particles, fields, gravitation, and cosmology, vol.89, no.6, 061502-.

  35. Kumar, Prayush, Barkett, Kevin, Bhagwat, Swetha, Afshari, Nousha, Brown, Duncan A., Lovelace, Geoffrey, Scheel, Mark A., Szilágyi, Béla. Accuracy and precision of gravitational-wave models of inspiraling neutron star-black hole binaries with spin: Comparison with matter-free numerical relativity in the low-frequency regime. Physical review. D, Particles, fields, gravitation, and cosmology, vol.92, no.10, 102001-.

  36. Essick, Reed, Vitale, Salvatore, Katsavounidis, Erik, Vedovato, Gabriele, Klimenko, Sergey. LOCALIZATION OF SHORT DURATION GRAVITATIONAL-WAVE TRANSIENTS WITH THE EARLY ADVANCED LIGO AND VIRGO DETECTORS. The Astrophysical journal, vol.800, no.2, 81-.

  37. Tiwari, V, Klimenko, S, Necula, V, Mitselmakher, G. Reconstruction of chirp mass in searches for gravitational wave transients. Classical and quantum gravity, vol.33, no.1, 01LT01-.

  38. Pekowsky, L., O’Shaughnessy, R., Healy, J., Shoemaker, D.. Comparing gravitational waves from nonprecessing and precessing black hole binaries in the corotating frame. Physical review. D, Particles, fields, gravitation, and cosmology, vol.88, no.2, 024040-.

  39. echnology, Pasadena, CA 91125, USA, Max-Planck-Institut für Gravitationsphysik, Albert-Einstein-Institut, Am Mühlenberg 1, D-14476 Golm, Germany, Theoretisch-Physikalisches Institut, Friedrich-Schiller-Universität, Max-Wien-Platz 1, D-07743 Jena, Germany, Center for Relativistic Astrophysics, School of Physics, Georgia Institute of Technology, Atlanta, GA 30332-0430, USA, Theoretisch-Physikalisches Institut, Friedrich-Schiller-Universität, Max-Wien-Platz 1, D-07743 Jena, Germany, Theoretical Astrophysics 350-17, California Institute of Technology, Pasadena, CA 91125, USA, Center for Computational Relativity and Gravitation, and School of Mathematical Sciences, Rochester Institute of Technology, 85 Lomb Memorial Drive, Rochester, NY 14623, USA, Canadian Institute for Theoretical Astrophysics, University of Toronto, Toronto, Ontario M5S 3H8, Canada, Center for Computational Relativity and Gravitation, and School of Mathematical Sciences, Rochester Institute of. Error-analysis and comparison to analytical models of numerical waveforms produced by the NRAR Collaboration. Classical and quantum gravity, vol.31, no.2, 025012-.

  40. Allen, Bruce, Anderson, Warren G., Brady, Patrick R., Brown, Duncan A., Creighton, Jolien D. E.. FINDCHIRP: An algorithm for detection of gravitational waves from inspiraling compact binaries. Physical review. D, Particles, fields, gravitation, and cosmology, vol.85, no.12, 122006-.

  41. Nelder, J. A., Mead, R.. A Simplex Method for Function Minimization. The Computer journal, vol.7, no.4, 308-313.

  42. Fischetti, Sebastian, Healy, James, Cadonati, Laura, London, Lionel, Mohapatra, Satyanarayan R. P., Shoemaker, Deirdre. Exploring the use of numerical relativity waveforms in burst analysis of precessing black hole mergers. Physical review. D, Particles, fields, gravitation, and cosmology, vol.83, no.4, 044019-.

  43. O’Shaughnessy, R., Vaishnav, B., Healy, J., Shoemaker, D.. Intrinsic selection biases of ground-based gravitational wave searches for high-mass black hole-black hole mergers. Physical review. D, Particles, fields, gravitation, and cosmology, vol.82, no.10, 104006-.

  44. O’Shaughnessy, R., London, L., Healy, J., Shoemaker, D.. Precession during merger: Strong polarization changes are observationally accessible features of strong-field gravity during binary black hole merger. Physical review. D, Particles, fields, gravitation, and cosmology, vol.87, no.4, 044038-.

  45. Pekowsky, Larne, Healy, James, Shoemaker, Deirdre, Laguna, Pablo. Impact of higher-order modes on the detection of binary black hole coalescences. Physical review. D, Particles, fields, gravitation, and cosmology, vol.87, no.8, 084008-.

  46. Healy, James, Laguna, Pablo, Pekowsky, Larne, Shoemaker, Deirdre. Template mode hierarchies for binary black hole mergers. Physical review. D, Particles, fields, gravitation, and cosmology, vol.88, no.2, 024034-.

  47. London, Lionel, Shoemaker, Deirdre, Healy, James. Modeling ringdown: Beyond the fundamental quasinormal modes. Physical review. D, Particles, fields, gravitation, and cosmology, vol.90, no.12, 124032-.

LOADING...

관련 콘텐츠

오픈액세스(OA) 유형

GOLD(Hybrid)

저자가 APC(Article Processing Charge)를 지불한 논문에 한하여 자유로운 이용이 가능한, hybrid 저널에 출판된 논문

저작권 관리 안내
섹션별 컨텐츠 바로가기

AI-Helper ※ AI-Helper는 오픈소스 모델을 사용합니다.

AI-Helper 아이콘
AI-Helper
안녕하세요, AI-Helper입니다. 좌측 "선택된 텍스트"에서 텍스트를 선택하여 요약, 번역, 용어설명을 실행하세요.
※ AI-Helper는 부적절한 답변을 할 수 있습니다.

선택된 텍스트

맨위로