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Thermal Unparticles: A New Form of Energy Density in the Universe

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arxiv 0710.5129 v3 pith:RT3P5RKO submitted 2007-10-26 hep-ph astro-ph

classification hep-phastro-ph
keywords densityenergygammauniverseformlargetemperaturethermal
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abstract

Unparticle $\U$ with scaling dimension $d_\U$ has peculiar thermal properties due to its unique phase space structure. We find that the equation of state parameter $\omega_\U$, the ratio of pressure to energy density, is given by $1/(2d_\U +1)$ providing a new form of energy in our universe. In an expanding universe, the unparticle energy density $\rho_\U(T)$ evolves dramatically differently from that for photons. For $d_\U >1$, even if $\rho_\U(T_D)$ at a high decoupling temperature $T_D$ is very small, it is possible to have a large relic density $\rho_\U(T^0_\gamma)$ at present photon temperature $T^0_\gamma$, large enough to play the role of dark matter. We calculate $T_D$ and $\rho_\U(T^0_\gamma)$ using photon-unparticle interactions for illustration.

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Cited by 1 Pith paper

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

  1. Enabling Strong Neutrino Self-interaction with an Unparticle Mediator

    hep-ph 2025-01 conditional novelty 7.0 of 10

    An unparticle mediator with a continuous mass spectrum can realize strong neutrino self-interactions while evading BBN/CMB and IceCube constraints.

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