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Static boson stars in the Einstein-Friedberg-Lee-Sirlin theory and their astrophysical images

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arxiv 2406.02695 v1 pith:7Q22PT6K submitted 2024-06-04 gr-qc

classification gr-qc
keywords starsastrophysicale-flsimagesaccretionanalysisbosondisk
verification ladder T0 review T1 audit T2 compute T3 formal
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We investigate the static boson star solutions in the so-called Einstein-Friedberg-Lee-Sirlin (E-FLS) theory, performing a complete analysis of the solution space in this model. We study the phenomenological aspects of E-FLS stars, for instance, by investigating the timelike and null geodesics with an emphasis on the analysis of circular timelike orbits and light rings. In order to study the astrophysical signatures of such stars, their images were obtained considering them surrounded by a geometrically thin accretion disk. Our results comprise two different models of accretion disks, namely the optically thin and thick disk models. We present a selection of our findings for the astrophysical images of E-FLS stars and discuss their relevance as a possible black hole mimicker.

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  1. Dipoles and chains of solitons in the Friedberg-Lee-Sirlin model

    gr-qc 2024-11 conditional novelty 7.0 of 10

    Stable dipolar boson stars and flat-space Q-ball chains are constructed in the Friedberg-Lee-Sirlin model, and chains beyond the dipole are found unstable in tested cases.

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