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Jianfei WANG, Shi PU. Relativistic Kelvin Circulation Theorem for Ideal Magnetohydrodynamics[J]. Nuclear Physics Review, 2020, 37(3): 679-683. DOI: 10.11804/NuclPhysRev.37.2019CNPC19
Citation: Jianfei WANG, Shi PU. Relativistic Kelvin Circulation Theorem for Ideal Magnetohydrodynamics[J]. Nuclear Physics Review, 2020, 37(3): 679-683. DOI: 10.11804/NuclPhysRev.37.2019CNPC19

Relativistic Kelvin Circulation Theorem for Ideal Magnetohydrodynamics

  • We have studied the relativistic Kelvin circulation theorem for ideal Magnetohydrodynamics. The relativistic Kelvin circulation theorem is a conservation equation for the called T-vorticity, We have briefly reviewed the ideal magnetohydrodynamics in relativistic heavy ion collisions. The highlight of this work is that we have obtained the general expression of relativistic Kelvin circulation theorem for ideal Magnetohydrodynamics. We have also applied the analytic solutions of ideal magnetohydrodynamics in Bjorken flow to check our results. Our main results can also be implemented to relativistic magnetohydrodynamics in relativistic heavy ion collisions.
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