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arXiv:2109.04892·v2·High Energy Physics — Theory

Polarized solitons in higher-spin wave dark matter

Mudit Jain🇺🇸 · Mustafa A. Amin🇺🇸

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Abstract

We first show that the effective non-relativistic theory of gravitationally interacting, massive integer-spin fields (spin-, , and in particular) is described by a component Schrödinger-Poisson action, where is the spin of the field. We then construct distinct, gravitationally supported solitons in this non-relativistic theory from identically polarized plane waves. Such solitons are extremally polarized, with macroscopically large spin, but no orbital angular momentum. These solitons form a basis set, out of which partially polarized solitons can be constructed. All such solitons are ground states, have a spherically symmetric energy density but not field configurations. We discuss how solitons in higher-spin fields can be distinguished from scalar solitons, and potential gravitational and non-gravitational probes of them.

Comments: 14 + 2 pages, 5 figures, added more references, submitted to PRD

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