arXiv · 2507.07324
Chiral Cherenkov radiation in the presence of a time-dependent chiral chemical potential
Abstract
The photon production process $f\to f+γ$ in the presence of a time-dependent chiral chemical potential $μ_5$ is studied. The validity of the adiabatic approximation is demonstrated in the ultra-relativistic limit. Analytical expressions for the photon spectrum are derived for two models of the chiral magnetic conductivity $b_0\propto μ_5$: (i) $b_0(t)= A_1+B_1\tanh(t/τ)$ and (ii) $b_0(t)= A_2(t/τ)/(1+t^2/τ^2)$. It is known that for constant $b_0$, photon emission may exhibit a resonance for one photon polarization depending on the sign of $b_0$. It is shown that in model (i), up to two resonances may occur, depending on the sign of the asymptotic values $b_0(\infty)$ and $b_0(-\infty)$. No resonances are observed in model (ii). Numerical calculations are performed using parameters relevant to quark-gluon plasma, and the universality of the results is discussed.
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Kirill Tuchin. 2025-10-20. Chiral Cherenkov radiation in the presence of a time-dependent chiral chemical potential. https://doi.org/10.1103/z8r3-y9xx
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