Modelling general relativistic perfect fluids in field theoretic language
Abstract
Skew-symmetric massless fields, their potentials being -forms, are close analogues of Maxwell's field (though the non-linear cases also should be considered). We observe that only two of them (2 and 3) automatically yield stress-energy tensors characteristic to normal perfect fluids. It is shown that they naturally describe both non-rotating () and rotating (then a combination of and fields is indispensable) general relativistic perfect fluids possessing every type of equations of state. Meanwile, a free field is completely equivalent to appearance of the cosmological term in Einstein's equations. Sound waves represent perturbations propagating on the background of the field. Some exotic properties of these two fields are outlined.
Keywords
Cite
@article{arxiv.gr-qc/9811077,
title = {Modelling general relativistic perfect fluids in field theoretic language},
author = {Nikolai V. Mitskievich},
journal= {arXiv preprint arXiv:gr-qc/9811077},
year = {2016}
}
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23 pages, 0 figures (LaTeX)