On the applicability of the Landau-Zener formula to axion-photon conversion
arXiv:2302.02700 · doi:10.1088/1475-7516/2023/04/021
Abstract
Axions and photons resonantly interconvert in regions where the plasma frequency approximately equals the axion mass. This process is directly analogous to an avoided level crossing in quantum mechanics, for which the celebrated Landau-Zener (LZ) formula provides a simple, non-perturbative solution for the conversion probability. The LZ formula is commonly used in studies of axion-photon conversion; however, in this context, it relies on the assumption that the magnetic field variation is small compared to variations of the plasma frequency, which is frequently not the case in real plasmas. We derive a generalised version of the LZ formula by allowing the boundaries to be located at a scale that is similar to the inhomogeneities. We find that the LZ formula fails when the oscillation range is small compared to the resonance region. This failure is more severe in the adiabatic limit, when the plasma frequency varies slowly, resulting in a conversion probability that is not maximal as opposed to a naive application of the LZ formula. Moreover, we consider circumstances where the generalised LZ formula does not apply and present an alternative semi-classical approximation with complementary regime of validity.
v2: 19 pages, 5 figures. minor changes to match the published version
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- Resonant Axion-Photon Conversion in the Early Inspiral of Neutron Star Binaries
- Competing Bosonic Reactions: Insight from Exactly Solvable Time-Dependent Models