Null-stream pointing with pulsar timing arrays
Jeffrey S. Hazboun, Shane L. Larson

TL;DR
This paper extends null-stream pointing techniques to pulsar timing arrays, enabling improved sky localization of gravitational wave sources by using linear combinations of timing residuals from multiple pulsars.
Contribution
It derives and demonstrates a null-stream pointing method specifically for pulsar timing arrays, enhancing gravitational wave source localization capabilities.
Findings
Method successfully derives null streams from pulsar timing residuals.
Multiple sub-arrays improve sky localization accuracy.
The technique complements existing localization methods in pulsar timing arrays.
Abstract
Locating sources on the sky is one of the largest challenges in gravitational wave astronomy, owing to the omni-directional nature of gravitational wave detection techniques, and the often intrinsically weak signals being observed. Ground-based detectors can address the pointing problem by observing with a network of detectors, effectively triangulating signal locations by observing the arrival times across the network. Space-based detectors will observe long-lived sources that persist while the detector moves relative to their location on the sky, using Doppler shifts of the signal to locate the sky position. While these methods improve the pointing capability of a detector or network, the angular resolution is still coarse compared to the standards one expects from electromagnetic astronomy. Another technique that can be used for sky localization is null-stream pointing. In the case…
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Taxonomy
TopicsPulsars and Gravitational Waves Research · Geophysics and Gravity Measurements · Adaptive optics and wavefront sensing
