Publications

Publications

by the Observational Relativity and Cosmology department

Journal Article (10)

1.
Journal Article
Amendola, L.; Rodrigues, D. C.; Kumar, S.; Quartin, M.: Constraints on cosmologically coupled black holes from gravitational wave observations and minimal formation mass. Monthly Notices of the Royal Astronomical Society 528 (2), pp. 2377 - 2390 (2024)
2.
Journal Article
Barr, E. D.; Dutta, A.; Freire, P. C. C.; Cadelano, M.; Gautam, T.; Kramer, M.; Pallanca, C.; Ransom, S. M.; Ridolfi, A.; Stappers, B. W. et al.; Tauris, T. M.; Krishnan, V. V.; Wex, N.; Bailes, M.; Behrend, J.; Buchner, S.; Burgay, M.; Chen, W.; Champion, D. J.; Chen, C. -. R.; Corongiu, A.; Geyer, M.; Men, Y. P.; Padmanabh, P. V.; Possenti, A.: A pulsar in a binary with a compact object in the mass gap between neutron stars and black holes. Science 383 (6680), pp. 275 - 279 (2024)
3.
Journal Article
Divyajyoti; Kumar, S.; Tibrewal, S.; Romero-Shaw, I. M.; Mishra, C. K.: Blind spots and biases: the dangers of ignoring eccentricity in gravitational-wave signals from binary black holes. Physical Review D 109 (4), 043037 (2024)
4.
Journal Article
Fairhurst, S.; Mills, C.; Colpi, M.; Schneider, R.; Sesana, A.; Trinca, A.; Valiante, R.: Identifying heavy stellar black holes at cosmological distances with next generation gravitational-wave observatories. Monthly Notices of the Royal Astronomical Society 529 (3), pp. 2116 - 2130 (2024)
5.
Journal Article
Qiu, Y.; Forteza, X. J.; Mourier, P.: Linear versus nonlinear modeling of black hole ringdowns. Physical Review D 109 (6), 064075 (2024)
6.
Journal Article
Taylor, J.; Ransom, S.; Padmanabh, P. V.: Algorithmic Pulsar Timer for Binaries. The Astrophysical Journal 964 (2), 128 (2024)
7.
Journal Article
Valtolina, S.; Shaifullah, G.; Samajdar, A.; Sesana, A.: Testing strengths, limitations and biases of current Pulsar Timing Arrays detection analyses on realistic data. Astronomy and Astrophysics 683, A201 (2024)
8.
Journal Article
Wang, H.; Harry, I.; Nitz, A. H.; Hu, Y.-M.: Space-based Gravitational Wave Observatories Will Be Able to Use Eccentricity to Unveil Stellar-mass Binary Black Hole Formation. Physical Review D 109 (6), 063029 (2024)
9.
Journal Article
Wang, Y.-F.; Nitz, A. H.: Targeted search for gravitational waves from highly spinning light compact binaries. Monthly Notices of the Royal Astronomical Society 528 (3), pp. 3891 - 3896 (2024)
10.
Journal Article
Weaving, C. R.; Nuttall, L. K.; Harry, I. W.; Wu, S.; Nitz, A.: Adapting the PyCBC pipeline to find and infer the properties of gravitational waves from massive black hole binaries in LISA. Classical and Quantum Gravity 41 (2), 025006 (2024)

Working Paper (4)

11.
Working Paper
Thongmeearkom, T.; Clark, C. J.; Breton, R. P.; Burgay, M.; Nieder, L.; Freire, P. C. C.; Barr, E. D.; Stappers, B. W.; Ransom, S. M.; Buchner, S. et al.; Calore, F.; Champion, D. J.; Cognard, I.; Grießmeier, J. -.; Kramer, M.; Levin, L.; Padmanabh, P. V.; Possenti, A.; Ridolfi, A.; Krishnan, V. V.; Vleeschower, L.: A targeted radio pulsar survey of redback candidates with MeerKAT. (2024)
12.
Working Paper
Bangale, P.; Bhattacharyya, B.; Camilo, F.; Clark, C. J.; Cognard, I.; DeCesar, M. E.; Ferrara, E. C.; Gentile, P.; Guillemot, L.; Hessels, J. W. T. et al.; Johnson, T. J.; Kerr, M.; McLaughlin, M. A.; Nieder, L.; Ransom, S. M.; Ray, P. S.; Roberts, M. S. E.; Roy, J.; Sanpa-Arsa, S.; Theureau, G.; Wolff, M. T.: A 350-MHz Green Bank Telescope Survey of Unassociated Fermi LAT Sources: Discovery and Timing of Ten Millisecond Pulsars. (2024)
13.
Working Paper
Dodge, O. G.; Breton, R. P.; Clark, C. J.; Burgay, M.; Strader, J.; Au, K. -.; Barr, E. D.; Buchner, S.; Dhillon, V. S.; Ferrara, E. C. et al.; Freire, P. C. C.; Griessmeier, J. -.; Kennedy, M. R.; Kramer, M.; Li, K. -.; Padmanabh, P. V.; Phosrisom, A.; Stappers, B. W.; Swihart, S. J.; Thongmeearkom, T.: Mass estimates from optical modelling of the new TRAPUM redback PSR J1910-5320. (2024)
14.
Working Paper
Mourier, P.; Heinesen, A.: Splitting the spacetime: A systematic analysis of foliation dependence in cosmic averaging. (2024)
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