Publications

2026

Scholarly publications

Roy, S., Haney, M., Pratten, G., Pang, P. T. H., & Broeck, C. V. D. (2026). Improved parametrized test of general relativity using the IMRPHENOMX waveform family: Including higher harmonics and precession. Physical Review D, 113(2), Article 024016. [DOI] [Portal]

2025

Scholarly publications

LIGO Scientific Collaboration, Virgo Collaboration and KAGRA Collaboration (2025). All-sky search for short gravitational-wave bursts in the first part of the fourth LIGO-Virgo-KAGRA observing run. Physical Review D, 112(10). [DOI]
LIGO Scientific Collaboration, Virgo Collaboration and KAGRA Collaboration (2025). Tests of general relativity with GWTC-3. Physical Review D, 112(8). [DOI]
LIGO Scientific Collaboration, Virgo Collaboration and KAGRA Collaboration (2025). GWTC-4.0: An Introduction to Version 4.0 of the Gravitational-Wave Transient Catalog. Astrophysical Journal Letters, 995(1), L18. [DOI]
LIGO Scientific Collaboration, Virgo Collaboration and KAGRA Collaboration (2025). GW231123: A Binary Black Hole Merger with Total Mass 190–265 M⊙. Astrophysical Journal Letters, 993(1), L25. [DOI]
LIGO Scientific Collaboration, Virgo Collaboration and KAGRA Collaboration (2025). GW241011 and GW241110: Exploring Binary Formation and Fundamental Physics with Asymmetric, High-spin Black Hole Coalescences. Astrophysical Journal Letters, 993(1), L21. [DOI]
King, B. L., De, S., Korobkin, O., Coughlin, M. W., Pang, P. T. H., & Strother, T. T. (2025). Inferring Neutron Star Merger Ejecta Morphology with Kilonovae. Publications of the Astronomical Society of the Pacific, 137(10), Article 104507. [DOI] [Portal]
Kunnumkai, K., Palmese, A., Bulla, M., Dietrich, T., Farah, A. M., & Pang, P. T. H. (2025). Kilonova emission from GW230529 and mass gap neutron star-black hole mergers. Physical Review D, 112(12), 1230051-12300513. Article 11070463. [DOI]
Koehn, H., Wouters, T., Pang, P. T. H., Bulla, M., Rose, H., Wichern, H., & Dietrich, T. (2025). Efficient Bayesian analysis of kilonovae and gamma ray burst afterglows with FIESTA. Astronomy and Astrophysics, 704, Article A55. [DOI] [Portal]
Narola, H., Wouters, T., Negri, L., Lopez, M., Dooney, T., Cireddu, F., Wils, M., Wong, I. C. F., Pang, P. T. H., Janquart, J., Samajdar, A., Broeck, C. V. D., & Li, T. G. F. (2025). Null-stream-based third-generation-ready glitch mitigation for gravitational wave measurements. Physical Review D, 112(2), Article 024079. [DOI] [Portal]
Wouters, T., Pang, P. T. H., Koehn, H., Rose, H., Somasundaram, R., Tews, I., Dietrich, T., & Broeck, C. V. D. (2025). Leveraging differentiable programming in the inverse problem of neutron stars. Physical Review D, 112(4), 1-16. [DOI]
LIGO Scientific Collaboration, Virgo Collaboration and KAGRA Collaboration (2025). Detecting Electromagnetic Counterparts to LIGO/Virgo/KAGRA Gravitational-wave Events with DECam: Neutron Star Mergers. Astrophysical Journal, 993(1), Article 15. [DOI] [Portal]
LIGO Scientific Collaboration, Virgo Collaboration and KAGRA Collaboration (2025). GW250114: Testing Hawking's Area Law and the Kerr Nature of Black Holes. Physical Review Letters, 135(11), Article 111403. [DOI] [Portal]
Virgo Collaboration (2025). Optical characterization of the Advanced Virgo gravitational wave detector for the O4 observing run. Applied Optics, 64(17), 4710-4726. [DOI] [Portal]
LIGO Scientific Collaboration, Virgo Collaboration and KAGRA Collaboration (2025). Search for Gravitational Waves Emitted from SN2023ixf. Astrophysical Journal, 985(2), Article 183. [DOI] [Portal]
LIGO Scientific Collaboration, Virgo Collaboration and KAGRA Collaboration (2025). Search for Continuous Gravitational Waves from Known Pulsars in the First Part of the Fourth LIGO-Virgo-KAGRA Observing Run. Astrophysical Journal, 983(2), Article 99. [DOI] [Portal]
Koehn, H., Rose, H., Pang, P. T. H., Somasundaram, R., Reed, B. T., Tews, I., Abac, A., Komoltsev, O., Kunert, N., Kurkela, A., Coughlin, M. W., Healy, B. F., & Dietrich, T. (2025). From Existing and New Nuclear and Astrophysical Constraints to Stringent Limits on the Equation of State of Neutron-Rich Dense Matter. Physical Review X, 15(2), Article 021014. [DOI] [Portal]
LIGO Scientific Collaboration, Virgo Collaboration and KAGRA Collaboration (2025). Swift-BAT GUANO Follow-up of Gravitational-wave Triggers in the Third LIGO–Virgo–KAGRA Observing Run. Astrophysical Journal, 980(2), Article 207. [DOI] [Portal]
Jhawar, S., Wouters, T., Pang, P. T. H., Bulla, M., Coughlin, M. W., & Dietrich, T. (2025). Data-driven approach for modeling the temporal and spectral evolution of kilonova systematic uncertainties. Physical Review D, 111(4), Article 043046. [DOI] [Portal]
Wong, I. C. F., Pang, P. T. H., Wils, M., Cireddu, F., Del Pozzo, W., & Li, T. G. F. (2025). Potential impact of noise correlation in next-generation gravitational wave detectors. Physical Review D, 111(4), Article 044046. [DOI] [Portal]

2024

Scholarly publications

LIGO Scientific Collaboration, Virgo Collaboration and KAGRA Collaboration (2024). A Search Using GEO600 for Gravitational Waves Coincident with Fast Radio Bursts from SGR 1935+2154. Astrophysical Journal, 977(2), Article 20. [DOI] [Portal]
LIGO Scientific Collaboration, Virgo Collaboration and KAGRA Collaboration (2024). The first joint observation by KAGRA with GEO 600. Proceedings of Science, 444, Article 1579. [DOI] [Portal]
Wouters, T., Pang, P. T. H., Dietrich, T., & Van Den Broeck, C. (2024). Robust parameter estimation within minutes on gravitational wave signals from binary neutron star inspirals. Physical Review D, 110(8), Article 083033. [DOI] [Portal]
LIGO Scientific Collaboration, Virgo Collaboration and KAGRA Collaboration (2024). Search for Eccentric Black Hole Coalescences during the Third Observing Run of LIGO and Virgo. Astrophysical Journal, 973(2), Article ad65ce. [DOI] [Portal]
Cireddu, F., Wils, M., Wong, I. C. F., Pang, P. T. H., Li, T. G. F., & Del Pozzo, W. (2024). Likelihood for a network of gravitational-wave detectors with correlated noise. Physical Review D, 110(10), Article 104060. [DOI] [Portal]
Koehn, H., Wouters, T., Rose, H., Pang, P. T. H., Somasundaram, R., Tews, I., & Dietrich, T. (2024). Classification of compact objects and model comparison using EOS knowledge. Physical Review D, 110(10), Article 103015. [DOI] [Portal]
Dietrich, T., Biswas, P., Brügmann, B., Chaurasia, S. V., Emma, M., Fabbri, F. M., Gieg, H. L., Kölsch, M., Kunert, N., Mattei, M., Neuweiler, A., Rose, H., Ho Pang, P. T., Schianchi, F., & Tonino, M. U. (2024). Simulating Binary Neutron Star Mergers. In High Performance Computing in Science and Engineering ’22: Transactions of the High Performance Computing Center, Stuttgart (HLRS) 2022 (pp. 5-18). Springer. [DOI] [Portal]
LIGO Scientific Collaboration, Virgo Collaboration and KAGRA Collaboration (2024). GWTC-2.1: Deep extended catalog of compact binary coalescences observed by LIGO and Virgo during the first half of the third observing run. Physical Review D, 109(2), Article 022001. [DOI] [Portal]
Pang, P. T. H., Sivertsen, L., Somasundaram, R., Dietrich, T., Sen, S., Tews, I., Coughlin, M. W., & Van Den Broeck, C. (2024). Probing quarkyonic matter in neutron stars with the Bayesian nuclear-physics multimessenger astrophysics framework. Physical Review C, 109(2), Article 025807. [DOI] [Portal]
LIGO Scientific Collaboration, Virgo Collaboration and KAGRA Collaboration (2024). Ultralight vector dark matter search using data from the KAGRA O3GK run. Physical Review D, 110(4), Article 042001. [DOI] [Portal]
Kunert, N., Gair, J., Pang, P. T. H., & Dietrich, T. (2024). Impact of gravitational waveform model systematics on the measurement of the Hubble constant. Physical Review D, 110(4), Article 043520. [DOI] [Portal]
LIGO Scientific Collaboration, Virgo Collaboration and KAGRA Collaboration (2024). Search for Gravitational-lensing Signatures in the Full Third Observing Run of the LIGO-Virgo Network. Astrophysical Journal, 970(2), Article 191. [DOI] [Portal]
LIGO Scientific Collaboration, Virgo Collaboration and KAGRA Collaboration (2024). Observation of Gravitational Waves from the Coalescence of a 2.5–4.5Me Compact Object and a Neutron Star. Astrophysical Journal Letters, 970(2), 1-39. Article L34. [DOI] [Portal]
LIGO Scientific Collaboration, Virgo Collaboration and KAGRA Collaboration (2024). Search for Gravitational-wave Transients Associated with Magnetar Bursts in Advanced LIGO and Advanced Virgo Data from the Third Observing Run. Astrophysical Journal, 966(1), Article 137. [DOI] [Repository]
Barna, T., Reed, B., Andreoni, I., Coughlin, M. W., Dietrich, T., Groom, S. L., du Laz, T. J., Pang, P. T. H., Purdum, J. N., & Rusholme, B. (2024). An online framework for fitting fast transient light curves. Monthly Notices of the Royal Astronomical Society, 531(1), 1084-1094. [DOI] [Repository]
Kunert, N., Antier, S., Nedora, V., Bulla, M., Pang, P. T. H., Anand, S., Coughlin, M., Tews, I., Barnes, J., Hussenot-Desenonges, T., Healy, B., Jegou Du Laz, T., Pilloix, M., Kiendrebeogo, W., & Dietrich, T. (2024). Bayesian model selection for GRB 211211A through multiwavelength analyses. Monthly Notices of the Royal Astronomical Society, 527(2), 3900-3911. [DOI] [Repository]
LIGO Scientific Collaboration, Virgo Collaboration and KAGRA Collaboration (2024). A Joint Fermi-GBM and Swift-BAT Analysis of Gravitational-wave Candidates from the Third Gravitational-wave Observing Run. Astrophysical Journal, 964(2), Article 149. [DOI] [Repository]
Hussenot-Desenonges, T., Wouters, T., Guessoum, N., Abdi, I., Abulwfa, A., Adami, C., Agüí Fernández, J. F., Ahumada, T., Aivazyan, V., Akl, D., Anand, S., Andrade, C. M., Antier, S., Ata, S. A., D'Avanzo, P., Azzam, Y. A., Baransky, A., Basa, S., Blazek, M., ... Zhu, Z. (2024). Multiband analyses of the bright GRB 230812B and the associated SN2023pel. Monthly Notices of the Royal Astronomical Society, 530(1), 1-19. [DOI] [Repository]

2023

Scholarly publications

Pang, P. T. H., Dietrich, T., Coughlin, M. W., Bulla, M., Tews, I., Almualla, M., Barna, T., Kiendrebeogo, R. W., Kunert, N., Mansingh, G., Reed, B., Sravan, N., Toivonen, A., Antier, S., VandenBerg, R. O., Heinzel, J., Nedora, V., Salehi, P., Sharma, R., ... Van Den Broeck, C. (2023). An updated nuclear-physics and multi-messenger astrophysics framework for binary neutron star mergers. Nature Communications, 14(1), 1-13. Article 8352. [DOI] [Repository]
LIGO Scientific Collaboration, Virgo Collaboration and KAGRA Collaboration (2023). GWTC-3: Compact Binary Coalescences Observed by LIGO and Virgo During the Second Part of the Third Observing Run. Physical Review X, 13(4), Article 041039. [DOI] [Repository]
Virgo Collaboration (2023). Advanced Virgo Plus: Future Perspectives. Journal of Physics: Conference Series, 2429(1), Article 012040. [DOI] [Repository]
LIGO Scientific Collaboration, Virgo Collaboration and KAGRA Collaboration (2023). Open Data from the Third Observing Run of LIGO, Virgo, KAGRA, and GEO. Astrophysical Journal, Supplement Series, 267(2), Article 29. [DOI] [Repository]
LIGO Scientific Collaboration and Virgo Collaboration (2023). Virgo detector characterization and data quality: Results from the O3 run. Classical and Quantum Gravity, 40(18), Article 185006. [DOI] [Repository]
LIGO Scientific Collaboration and Virgo Collaboration (2023). Virgo detector characterization and data quality: Tools. Classical and Quantum Gravity, 40(18), Article 185005. [DOI] [Repository]

2022

Scholarly publications

LIGO Scientific Collaboration, Virgo Collaboration and KAGRA Collaboration (2022). Search for intermediate-mass black hole binaries in the third observing run of Advanced LIGO and Advanced Virgo. Astronomy and Astrophysics, 659, 1-25. Article A84. [DOI] [Repository]
LIGO Scientific Collaboration, Virgo Collaboration and KAGRA Collaboration (2022). Model-based Cross-correlation Search for Gravitational Waves from the Low-mass X-Ray Binary Scorpius X-1 in LIGO O3 Data. Astrophysical Journal Letters, 941(2), 1-19. Article L30. [DOI] [Repository]
LIGO Scientific Collaboration and Virgo Collaboration (2022). Search for Subsolar-Mass Binaries in the First Half of Advanced LIGO's and Advanced Virgo's Third Observing Run. Physical Review Letters, 129(6), 1-16. Article 061104. [DOI] [Repository]
LIGO Scientific Collaboration, Virgo Collaboration and KAGRA Collaboration (2022). All-sky, all-frequency directional search for persistent gravitational waves from Advanced LIGO's and Advanced Virgo's first three observing runs. Physical Review D, 105(12), 1-23. Article 122001. [DOI] [Repository]
Virgo Collaboration (2022). Calibration of advanced Virgo and reconstruction of the detector strain h( t) during the observing run O3. Classical and Quantum Gravity, 39(4), 1-50. Article 045006. [DOI] [Repository]
Virgo Collaboration (2022). The Virgo O3 run and the impact of the environment. Classical and Quantum Gravity, 39(23), 1-41. Article 235009. [DOI] [Repository]
Kunert, N., Pang, P. T. H., Tews, I., Coughlin, M. W., & Dietrich, T. (2022). Quantifying modeling uncertainties when combining multiple gravitational-wave detections from binary neutron star sources. Physical Review D, 105(6), 1-7. Article L061301. [DOI] [Repository]
Andreoni, I., Coughlin, M. W., Perley, D. A., Yao, Y., Lu, W., Cenko, S. B., Kumar, H., Anand, S., Ho, A. Y. Q., Kasliwal, M. M., de Ugarte Postigo, A., Sagués-Carracedo, A., Schulze, S., Kann, D. A., Kulkarni, S. R., Sollerman, J., Tanvir, N., Rest, A., Izzo, L., ... Zhang, J. (2022). A very luminous jet from the disruption of a star by a massive black hole. Nature, 612(4581), 430-434. [DOI] [Repository]
LIGO Scientific Collaboration, Virgo Collaboration and KAGRA Collaboration (2022). Search for gravitational waves from Scorpius X-1 with a hidden Markov model in O3 LIGO data. Physical Review D, 106(6), Article 062002. [DOI] [Repository]
LIGO Scientific Collaboration, Virgo Collaboration and KAGRA Collaboration (2022). All-sky search for continuous gravitational waves from isolated neutron stars using Advanced LIGO and Advanced Virgo O3 data. Physical Review D, 106(10), 1-37. Article 102008. [DOI] [Repository]
LIGO Scientific Collaboration, Virgo Collaboration and KAGRA Collaboration (2022). Search for continuous gravitational wave emission from the Milky Way center in O3 LIGO-Virgo data. Physical Review D, 106(4), 1-24. Article 042003. [DOI] [Repository]
Pang, T. H. (2022). From spacetime to nucleus: Probing nuclear physics and testing general relativity. [Doctoral thesis 1 (Research UU / Graduation UU), Universiteit Utrecht]. Utrecht University. [DOI] [Repository]
LIGO Scientific Collaboration, Virgo Collaboration and KAGRA Collaboration (2022). Searches for Gravitational Waves from Known Pulsars at Two Harmonics in the Second and Third LIGO-Virgo Observing Runs. Astrophysical Journal, 935(1), 1-29. Article 1. [DOI] [Repository]
LIGO Scientific Collaboration, Virgo Collaboration and KAGRA Collaboration (2022). Narrowband Searches for Continuous and Long-duration Transient Gravitational Waves from Known Pulsars in the LIGO-Virgo Third Observing Run. Astrophysical Journal, 932(2), 1-27. Article 133. [DOI] [Repository]
LIGO Scientific Collaboration, Virgo Collaboration and KAGRA Collaboration (2022). Constraints on dark photon dark matter using data from LIGO's and Virgo's third observing run. Physical Review D, 105(6), 1-20. Article 063030. [DOI] [Repository]
LIGO Scientific Collaboration, & Virgo Collaboration (2022). First joint observation by the underground gravitational-wave detector KAGRA with GEO 600. Progress of Theoretical and Experimental Physics, 2022(6), 1-37. Article 063F01. [DOI] [Repository]
Pang, P. T. H., Tews, I., Dietrich, T., Le Fèvre, A., Schwenk, A., Trautmann, W., Agarwal, K., Bulla, M., Coughlin, M. W., & Van Den Broeck, C. (2022). Constraining neutron-star matter with microscopic and macroscopic collisions. Nature, 606(7913), 276-280. [DOI] [Repository]
LIGO Scientific Collaboration and Virgo Collaboration (2022). Search for Gravitational Waves Associated with Gamma-Ray Bursts Detected by Fermi and Swift during the LIGO-Virgo Run O3b. Astrophysical Journal, 928(2), 1-20. Article 186. [DOI] [Repository]
LIGO Scientific Collaboration and Virgo Collaboration (2022). All-sky search for gravitational wave emission from scalar boson clouds around spinning black holes in LIGO O3 data. Physical Review D, 105(10), 1-28. Article 102001. [DOI] [Repository]
LIGO Scientific Collaboration and Virgo Collaboration (2022). Search of the early O3 LIGO data for continuous gravitational waves from the Cassiopeia A and Vela Jr. supernova remnants. Physical Review D, 105(8), 1-25. Article 082005. [DOI] [Repository]
LIGO Scientific Collaboration, Virgo Collaboration and KAGRA Collaboration (2022). Search for continuous gravitational waves from 20 accreting millisecond x-ray pulsars in O3 LIGO data. Physical Review D, 105(2), 1-42. Article 022002. [DOI] [Repository]

2021

Scholarly publications

LIGO Scientific Collaboration, Virgo Collaboration and KAGRA Collaboration (2021). All-sky search for short gravitational-wave bursts in the third Advanced LIGO and Advanced Virgo run. Physical Review D, 104(12), 1-24. Article 122004. [DOI] [Repository]
LIGO Scientific Collaboration, Virgo Collaboration and KAGRA Collaboration (2021). All-sky search for long-duration gravitational-wave bursts in the third Advanced LIGO and Advanced Virgo run. Physical Review D, 104(10), 1-16. Article 102001. [DOI] [Repository]
LIGO Scientific Collaboration and Virgo Collaboration (2021). Search for Lensing Signatures in the Gravitational-Wave Observations from the First Half of LIGO-Virgo's Third Observing Run. Astrophysical Journal, 923(1), 1-24. Article 14. [DOI] [Repository]
Archimedes Collaboration, & Virgo Collaboration (2021). High-bandwidth beam balance for vacuum-weight experiment and Newtonian noise subtraction. European Physical Journal Plus, 136(3), 1-14. Article 335. [DOI] [Repository]
Ahumada, T., Singer, L. P., Anand, S., Coughlin, M. W., Kasliwal, M. M., Ryan, G., Andreoni, I., Cenko, S. B., Fremling, C., Kumar, H., Pang, P. T. H., Burns, E., Cunningham, V., Dichiara, S., Dietrich, T., Svinkin, D. S., Almualla, M., Castro-Tirado, A. J., De, K., ... Valeev, A. F. (2021). Discovery and confirmation of the shortest gamma-ray burst from a collapsar. Nature Astronomy, 5(9), 917-927. [DOI]
LIGO Scientific Collaboration, Virgo Collaboration and KAGRA Collaboration (2021). Constraints from LIGO O3 Data on Gravitational-wave Emission Due to R-modes in the Glitching Pulsar PSR J0537-6910. Astrophysical Journal, 922(1), 1-22. Article 71. [DOI] [Repository]
Andreoni, I., Coughlin, M. W., Kool, E. C., Kasliwal, M. M., Kumar, H., Bhalerao, V., Carracedo, A. S., Ho, A. Y. Q., Pang, P. T. H., Saraogi, D., Sharma, K., Shenoy, V., Burns, E., Ahumada, T., Anand, S., Singer, L. P., Perley, D. A., De, K., Fremling, U. C., ... Yao, Y. (2021). Fast-transient searches in real time with ZTFReST: Identification of three optically discovered gamma-ray burst afterglows and new constraints on the kilonova rate. Astrophysical Journal, 918(2), Article 63. [DOI] [Portal]
Tews, I., Pang, P. T. H., Dietrich, T., Coughlin, M. W., Antier, S., Bulla, M., Heinzel, J., & Issa, L. (2021). On the nature of GW190814 and its impact on the understanding of supranuclear matter. Astrophysical Journal Letters, 908(1), 1-6. Article L1. [DOI] [Repository]
LIGO Scientific Collaboration, Virgo Collaboration and KAGRA Collaboration (2021). Constraints on Cosmic Strings Using Data from the Third Advanced LIGO-Virgo Observing Run. Physical Review Letters, 126(24), 1-19. Article 241102. [DOI] [Repository]
LIGO Scientific Collaboration, Virgo Collaboration and KAGRA Collaboration (2021). Upper limits on the isotropic gravitational-wave background from Advanced LIGO and Advanced Virgo's third observing run. Physical Review D, 104(2), 1-27. Article 022004. [DOI] [Repository]
LIGO Scientific Collaboration, Virgo Collaboration and KAGRA Collaboration (2021). Diving below the Spin-down Limit: Constraints on Gravitational Waves from the Energetic Young Pulsar PSR J0537-6910. Astrophysical Journal Letters, 913(2), 1-15. Article L27. [DOI] [Repository]
LIGO Scientific Collaboration and Virgo Collaboration (2021). Search for Gravitational Waves Associated with Gamma-Ray Bursts Detected by Fermi and Swift during the LIGO-Virgo Run O3a. Astrophysical Journal, 915(2), 1-16. Article 86. [DOI] [Repository]
LIGO Scientific Collaboration and Virgo Collaboration (2021). Population properties of compact objects from the second LIGO-Virgo gravitational-wave transient catalog. Astrophysical Journal Letters, 913(1), 1-41. Article L7. [DOI] [Repository]
LIGO Scientific Collaboration and Virgo Collaboration (2021). Tests of general relativity with binary black holes from the second LIGO-Virgo gravitational-wave transient catalog. Physical Review D, 103(12), 1-43. Article 122002. [DOI] [Repository]
LIGO Scientific Collaboration and Virgo Collaboration (2021). GWTC-2: Compact Binary Coalescences Observed by LIGO and Virgo during the First Half of the Third Observing Run. Physical Review X, 11(2), 1-52. Article 021053. [DOI] [Repository]
Pang, P. T. H., Tews, I., Coughlin, M. W., Bulla, M., Van Den Broeck, C., & Dietrich, T. (2021). Nuclear Physics Multimessenger Astrophysics Constraints on the Neutron Star Equation of State: Adding NICER's PSR J0740+6620 Measurement. Astrophysical Journal, 922(1), 1-9. Article 14. [DOI] [Repository]
LIGO Scientific Collaboration, Virgo Collaboration and KAGRA Collaboration (2021). Searches for continuous gravitational waves from young supernova remnants in the early third observing run of advanced LIGO and Virgo. Astrophysical Journal, 921(1), 1-29. Article 80. [DOI] [Repository]
LIGO Scientific Collaboration, Virgo Collaboration and KAGRA Collaboration (2021). Search for anisotropic gravitational-wave backgrounds using data from Advanced LIGO and Advanced Virgo's first three observing runs. Physical Review D, 104(2), 1-25. Article 022005. [DOI] [Repository]
LIGO Scientific Collaboration, Virgo Collaboration and KAGRA Collaboration (2021). Observation of Gravitational Waves from Two Neutron Star-Black Hole Coalescences. Astrophysical Journal Letters, 915(1), 8-24. Article L5. [DOI] [Repository]
LIGO Scientific Collaboration, Virgo Collaboration and KAGRA Collaboration (2021). All-sky search for continuous gravitational waves from isolated neutron stars in the early O3 LIGO data. Physical Review D, 104(8), 1-28. Article 082004. [DOI] [Repository]
Gupta, P. K., Spieksma, T. F. M., Pang, P. T. H., Koekoek, G., & Van Den Broeck, C. (2021). Bounding dark charges on binary black holes using gravitational waves. Physical Review D, 104(6), 1-9. Article 063041. [DOI] [Repository]
LIGO Scientific Collaboration and Virgo Collaboration (2021). All-sky search in early O3 LIGO data for continuous gravitational-wave signals from unknown neutron stars in binary systems. Physical Review D, 103(6), 1-23. Article 064017. [DOI] [Repository]
LIGO Scientific Collaboration and Virgo Collaboration (2021). A Gravitational-wave Measurement of the Hubble Constant following the Second Observing Run of Advanced LIGO and Virgo. Astrophysical Journal, 909(2), Article 218. [DOI] [Repository]
LIGO Scientific Collaboration and Virgo Collaboration (2021). Open data from the first and second observing runs of Advanced LIGO and Advanced Virgo. SoftwareX, 13, 1-22. Article 100658. [DOI] [Repository]

2020

Scholarly publications

LIGO Scientific Collaboration and Virgo Collaboration (2020). A guide to LIGO-Virgo detector noise and extraction of transient gravitational-wave signals. Classical and Quantum Gravity, 37(5), Article 055002. [DOI] [Repository]
LIGO Scientific Collaboration and Virgo Collaboration (2020). Model comparison from LIGO-Virgo data on GW170817's binary components and consequences for the merger remnant. Classical and Quantum Gravity, 37(4), Article 045006. [DOI] [Repository]
LIGO Scientific Collaboration and Virgo Collaboration (2020). Prospects for observing and localizing gravitational-wave transients with Advanced LIGO, Advanced Virgo and KAGRA. Living Reviews in Relativity, 23(1), Article 3. [DOI] [Repository]
LIGO Scientific Collaboration and Virgo Collaboration (2020). GW190425: Observation of a Compact Binary Coalescence with Total Mass similar to 3.4 MΘ. Astrophysical Journal Letters, 892(1), Article L3. [DOI] [Repository]
Pang, P. T. H., Dietrich, T., Tews, I., & Van Den Broeck, C. (2020). Parameter estimation for strong phase transitions in supranuclear matter using gravitational-wave astronomy. Physical Review Research, 2(3), Article 033514. [DOI] [Repository]
Pang, P. T. H., Hannuksela, O. A., Dietrich, T., Pagano, G., & Harry, I. W. (2020). Lensed or not lensed: determining lensing magnifications for binary neutron star mergers from a single detection. Monthly Notices of the Royal Astronomical Society, 495(4), 3740-3750. [DOI] [Portal]
Dietrich, T., Coughlin, M. W., Pang, P. T. H., Bulla, M., Heinze, J., Issa, L., Tews, I., & Antier, S. (2020). Multimessenger constraints on the neutron-star equation of state and the Hubble constant. Science, 370(6523), 1450-1453. [DOI] [Repository]
LIGO Scientific Collaboration and Virgo Collaboration (2020). Properties and Astrophysical Implications of the 150 MBinary Black Hole Merger GW190521. Astrophysical Journal Letters, 900(1), Article L13. [DOI]
LIGO Scientific Collaboration and Virgo Collaboration (2020). Gravitational-wave Constraints on the Equatorial Ellipticity of Millisecond Pulsars. Astrophysical Journal Letters, 902(1), Article L21. [DOI]
LIGO Scientific Collaboration and Virgo Collaboration (2020). GW190814: Gravitational Waves from the Coalescence of a 23 Solar Mass Black Hole with a 2.6 Solar Mass Compact Object. Astrophysical Journal Letters, 896(2), Article L44. [DOI] [Repository]
LIGO Scientific Collaboration and Virgo Collaboration (2020). GW190412: Observation of a binary-black-hole coalescence with asymmetric masses. Physical Review D, 102(4), Article 043015. [DOI] [Repository]
LIGO Scientific Collaboration and Virgo Collaboration (2020). A joint Fermi-GBM and LIGO/Virgo analysis of compact binary mergers from the first and second gravitational-wave observing runs. Astrophysical Journal, 893(2), Article 100. [DOI] [Portal]
LIGO Scientific Collaboration and Virgo Collaboration (2020). GW190521: A Binary Black Hole Merger with a Total Mass of 150  M⊙. Physical Review Letters, 125(10), Article 101102 . [DOI] [Repository]
Virgo Collaboration (2020). Quantum Backaction on kg-Scale Mirrors: Observation of Radiation Pressure Noise in the Advanced Virgo Detector. Physical Review Letters, 125(13), Article 131101. [DOI] [Repository]
Pang, P. T. H., Lo, R. K. L., Wong, I. C. F., Li, T. G. F., & Van Den Broeck, C. (2020). Generic searches for alternative gravitational wave polarizations with networks of interferometric detectors. Physical Review D, 101(10), 1-8. Article 104055. [DOI] [Repository]
Asali, Y., Pang, P. T. H., Samajdar, A., & Van Den Broeck, C. (2020). Probing resonant excitations in exotic compact objects via gravitational waves. Physical Review D, 102(2), Article 024016. [DOI] [Portal]

2019

Scholarly publications

LIGO Scientific Collaboration and Virgo Collaboration (2019). Search for Gravitational-wave Signals Associated with Gamma-Ray Bursts during the Second Observing Run of Advanced LIGO and Advanced Virgo. Astrophysical Journal, 886(1), Article 75. [DOI]
LIGO Scientific Collaboration and Virgo Collaboration (2019). Search for gravitational waves from Scorpius X-1 in the second Advanced LIGO observing run with an improved hidden Markov model. Physical Review D, 100(12), Article 122002. [DOI]
LIGO Scientific Collaboration and Virgo Collaboration (2019). Tests of general relativity with the binary black hole signals from the LIGO-Virgo catalog GWTC-1. Physical Review D, 100(10), Article 104036. [DOI]
Virgo Collaboration (2019). Increasing the Astrophysical Reach of the Advanced Virgo Detector via the Application of Squeezed Vacuum States of Light. Physical Review Letters, 123(23), Article 231108. [DOI]

2018

Scholarly publications

LIGO Scientific Collaboration and Virgo Collaboration (2018). GW170817: Measurements of Neutron Star Radii and Equation of State. Physical Review Letters, 121(16), Article 161101. [DOI]