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Stochastic gravitational wave background phenomenology in a pulsar timing array

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arxiv 2208.12538 v2 pith:HKD66GHD submitted 2022-08-26 gr-qc astro-ph.CO

classification gr-qcastro-ph.CO
keywords gravitationalpulsarwavebackgroundstochastictimingarraypower
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Pulsar timing offers an independent avenue to test general relativity and alternative gravity theories. This requires an understanding of how metric polarizations beyond the familiar transverse tensor ones imprint as a stochastic gravitational wave background and correlate the arrival time of radio pulses from a pair of millisecond pulsars. In this work, we focus on an isotropic stochastic gravitational wave background and present a straightforward, self-contained formalism for obtaining the power spectrum and the overlap reduction function, the relevant physical observable in a pulsar timing array, for generic gravitational degrees of freedom featuring both transverse and longitudinal modes off the light cone. We additionally highlight our consideration of finite pulsar distances, which we find significant in two ways: first, making all the modes well defined, and second, keeping the small scale power that is contained by pulsars of subdegree separations in the sky. We discuss this for tensor, vector, and scalar polarizations, for each one focusing on the angular power spectrum and the overlap reduction function for an isotropic stochastic gravitational wave background. Our results pave the road for an efficient numerical method for examining the gravitational wave induced spatial correlations across millisecond pulsars in a pulsar timing array.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Mitigating cosmic variance in the Hellings-Downs curve: a Cosmic Microwave Background analogy

    gr-qc 2024-12 conditional novelty 6.0 of 10

    An optimal multipole-space frequency weighting shows that PTA cosmic variance can be reduced with longer observations and better cadence, and the CMB would show a Hellings-Downs curve only if n_T>4.

  2. Probing Graviton Mass with MeerKAT PTA and SKA--PTA Forecasts

    astro-ph.CO 2026-07 conditional novelty 5.0 of 10

    MPTA 4.5-year data imply a 90% upper bound of mg < 2.1 × 10−23 eV/c2, consistent with massless gravitons; SKA-PTA could reach ~10−25 eV/c2.

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