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February 1, 2024Journal of Cosmology and Astroparticle Physics8 citationsOpen Access

Pulsar Timing Array signature from oscillating metric perturbations due to ultra-light axion

JHJai-chan HwangDJDonghui JeongHNHyerim Noh

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Abstract

Abstract A coherently oscillating ultra-light axion can behave as dark matter. In particular, its coherently oscillating pressure perturbations can source an oscillating scalar metric perturbation, with a characteristic oscillation frequency which is twice the axion Compton frequency. A candidate in the mass range 10 (-24,-21) eV can provide a signal in the frequency range tested by current and future Pulsar Timing Array (PTA) programs. Involving the pressure perturbations in a highly nonlinear environment, such an analysis demands a relativistic and nonlinear treatment. Here, we provide a rigorous derivation of the effect assuming weak-gravity and slow-motion limit of Einstein's gravity in zero-shear gauge and show that dark matter's velocity potential determines the oscillation phase and frequency change. A monochromatic PTA signal correlated with the velocity field would confirm the prediction, for example, by cross-correlating the PTA results with the future local velocity flow measurements.

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Cite This Study

Hwang et al. (2024) studied this question.

synapsesocial.com/papers/6a2090463f9b8cb80cc64367https://doi.org/10.1088/1475-7516/2024/02/014
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