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Enhancement of second-order gravitational waves at Q-ball decay

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arxiv 2212.13370 v1 pith:WYO3XCXG submitted 2022-12-27 astro-ph.CO hep-ph

Enhancement of second-order gravitational waves at Q-ball decay

classification astro-ph.CO hep-ph
keywords asymmetrydecaylargeleptontransitiongravitationalperturbationsq-balls
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The recent observation of $^4$He favors a large lepton asymmetry at the big bang nucleosynthesis. If Q-balls with a lepton charge decay after the electroweak phase transition, such a large lepton asymmetry can be generated without producing too large baryon asymmetry. In this scenario, Q-balls dominate the universe before the decay and induces the sharp transition from the early matter-dominated era to the radiation-dominated era. In this transition, the gravitational waves (GWs) are enhanced through a second-order effect of the scalar perturbations. We evaluate the density of the produced GWs and show that pulsar timing array observations can probe this scenario depending on the amplitude of the scalar perturbations.

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Cited by 1 Pith paper

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    A U(1)_{B-L} flaton decay chain can produce both a large positive electron-neutrino asymmetry and the observed baryon asymmetry, with values matching EMPRESS and BBN for a symmetry-breaking scale around 10^10 GeV.