Publications of Rutger van Haasteren
All genres
Journal Article (18)
1.
Journal Article
978 (2), L29 (2025)
The NANOGrav 15 yr Data Set: Running of the Spectral Index. Astrophysical Journal Letters 2.
Journal Article
966 (1), 105 (2024)
Comparing Recent Pulsar Timing Array Results on the Nanohertz Stochastic Gravitational-wave Background. Astrophysical Journal 3.
Journal Article
109 (10), 103012 (2024)
The NANOGrav 15-year Gravitational-Wave Background Analysis Pipeline. Physical Review D 4.
Journal Article
971 (2), 150 (2024)
PINT: Maximum-likelihood estimation of pulsar timing noise parameters. The Astrophysical Journal 5.
Journal Article
273 (2), 23 (2024)
Pulsar Timing Arrays require hierarchical models. The Astrophysical Journal Supplement Series 6.
Journal Article
537 (1), pp. L1 - L6 (2024)
Use Model Averaging instead of Model Selection in Pulsar Timing. Monthly Notices of the Royal Astronomical Society 7.
Journal Article
951 (1), L18 (2023)
The NANOGrav 15-year Data Set: Evidence for a Gravitational-Wave Background. The Astrophysical Journal Letters 8.
Journal Article
951 (2), L50 (2023)
The NANOGrav 15-year Data Set: Bayesian Limits on Gravitational Waves from Individual Supermassive Black Hole Binaries. Astrophysical Journal Letters 9.
Journal Article
959 (1), 9 (2023)
How to Detect an Astrophysical Nanohertz Gravitational-Wave Background. The Astrophysical Journal 10.
Journal Article
107 (4), 043013 (2023)
Efficient Gravitational Wave Searches with Pulsar Timing Arrays using Hamiltonian Monte Carlo. Physical Review D 11.
Journal Article
108 (6), 063008 (2023)
Exploring the Capabilities of Gibbs Sampling in Single-pulsar Analyses of Pulsar Timing Arrays. Physical Review D 12.
Journal Article
108 (10), 103019 (2023)
Rapid refitting techniques for Bayesian spectral characterization of the gravitational wave background using pulsar timing arrays. Physical Review D 13.
Journal Article
455 (2), pp. 1665 - 1679 (2016)
European Pulsar Timing Array Limits on Continuous Gravitational Waves from Individual Supermassive Black Hole Binaries. Monthly Notices of the Royal Astronomical Society 14.
Journal Article
437 (3), pp. 3004 - 3023 (2014)
TempoNest: A Bayesian approach to pulsar timing analysis. Monthly Notices of the Royal Astronomical Society 15.
Journal Article
769, 63 (2013)
An Efficient Approximation to the Likelihood for Gravitational Wave Stochastic Background Detection Using Pulsar Timing Data. Astrophysical Journal 16.
Journal Article
87, 104021 (2013)
Hyper-efficient model-independent Bayesian method for the analysis of pulsar timing data. Physical Review D 17.
Journal Article
429 (1), pp. 55 - 62 (2013)
Accelerating pulsar timing data analysis. Monthly Notices of the Royal Astronomical Society 18.
Journal Article
428 (2), pp. 1147 - 1159 (2013)
Understanding and analysing time-correlated stochastic signals in pulsar timing. Monthly Notices of the Royal Astronomical Society Conference Paper (2)
19.
Conference Paper
291, pp. 438 - 440 (2013)
A data analysis library for gravitational wave detection. Neutron Stars and Pulsars: Challenges and Opportunities after 80 years. Proceedings of the International Astronomical Union 20.
Conference Paper
467, pp. 115 - 128 (2013)
Gravitational wave detection with pulsar timing. 9TH LISA SYMPOSIUM, Paris, France, May 21, 2012 - May 25, 2012. ASP Conference Series Volumes