Model-based asymptotically optimal dispersion measure correction for pulsar timing
arXiv:1404.2084 · doi:10.1093/mnras/stu664
Abstract
In order to reach the sensitivity required to detect gravitational waves, pulsar timing array experiments need to mitigate as much noise as possible in timing data. A dominant amount of noise is likely due to variations in the dispersion measure. To correct for such variations, we develop a statistical method inspired by the maximum likelihood estimator and optimal filtering. Our method consists of two major steps. First, the spectral index and amplitude of dispersion measure variations are measured via a time-domain spectral analysis. Second, the linear optimal filter is constructed based on the model parameters found in the first step, and is used to extract the dispersion measure variation waveforms. Compared to current existing methods, this method has better time resolution for the study of short timescale dispersion variations, and generally produces smaller errors in waveform estimations. This method can process irregularly sampled data without any interpolation because of its time-domain nature. Furthermore, it offers the possibility to interpolate or extrapolate the waveform estimation to regions where no data is available. Examples using simulated data sets are included for demonstration.
15 pages, 15 figures, submitted 15th Sept. 2013, accepted 2nd April 2014 by MNRAS. MNRAS, 2014
References in corpus (7)
- TEMPO2, a new pulsar timing package. I: Overview
- PSRCHIVE and PSRFITS An Open Approach to Radio Pulsar Data Storage and Analysis
- Tempo2, a new pulsar timing package. II: The timing model and precision estimates
- The relativistic pulsar-white dwarf binary PSR J1738+0333 II. The most stringent test of scalar-tensor gravity
- On measuring the gravitational-wave background using Pulsar Timing Arrays
- Dispersion Measure Variations and their Effect on Precision Pulsar Timing
- Reconstruction of signals with unknown spectra in information field theory with parameter uncertainty
Cited by in corpus (5)
- New advances in the Gaussian-process approach to pulsar-timing data analysis
- Measuring pulse times of arrival from broadband pulsar observations
- A Bayesian method for pulsar template generation
- Interstellar Medium Mitigation Techniques in Pulsar Timing Arrays
- Searching for A Generic Gravitational Wave Background via Bayesian Nonparametric Analysis with Pulsar Timing Arrays