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Forward cascade of large-scale primordial magnetic fields during structure formation
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Forward cascade of large-scale primordial magnetic fields during structure formation
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The origin of large scale magnetic fields in the Universe is widely thought to be from early Universe processes, like inflation or phase transitions. These magnetic fields evolve via magnetohydrodynamic processes until the epoch of recombination. When structures begin to form in the later Universe, the conservation of magnetic flux amplifies the magnetic fields via the adiabatic collapse of gravitationally bound gas clouds hosting the magnetic fields and moves them to smaller scales. In this work, we have semi-analytically studied this forward cascade effect, considering simple models of gravitational collapse of structures. We find that this simple model is able to reproduce the general qualitative features of the evolution of the magnetic field spectrum as seen from magnetized cosmological simulations.
Forward citations
Cited by 2 Pith papers
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Imprints of primordial magnetic fields in gravitational collapse during early structure formation
Gravitational collapse can trigger a small-scale dynamo that amplifies magnetic fields below the Jeans scale, potentially erasing primordial spectral features unless the turbulent inertial range is resolved.
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Light nuclei under magnetic field and the lithium problem
Magnetic fields linearly change the exponential decay rate of light-nucleus wave functions, which the authors argue could enhance low-energy fusion reactions and, at implausibly high field strengths, affect the Big Ba...
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