2019
DOI: 10.1103/physrevd.100.084042
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Perturbing the ground state of Dirac stars

Abstract: Dirac stars are self-gravitating configurations of spin-1/2 fermions in which the fermions are described by the Dirac equation. After a detailed review of the derivation of the equations and their static solutions, we present an in-depth dynamical stability analysis of the ground state similar to previous studies for boson stars. We confirm that there exist both stable and unstable branches of static solutions and show that weakly perturbed Dirac stars from the unstable branch migrate to the stable branch. We … Show more

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Cited by 13 publications
(12 citation statements)
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“…Ethiopian garlic is used in traditional medicine for infectious disease and some other cases. This research suggests that garlic A. sativum has antimicrobial properties against S.aureus [10].…”
mentioning
confidence: 71%
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“…Ethiopian garlic is used in traditional medicine for infectious disease and some other cases. This research suggests that garlic A. sativum has antimicrobial properties against S.aureus [10].…”
mentioning
confidence: 71%
“…Garlic and onion are believed from Middle East and have been part of traditional medication [21]. Allium sativum has had an important dietary and medicinal role for centuries [10].…”
Section: Food Convertion Ratio (Fcr) Performancementioning
confidence: 99%
“…That is, the configurations located to the left of the maximum are stable, and those located to the right are unstable. However, this problem must be studied separately by analyzing, for instance, the behavior of perturbations, as is done for boson stars [35,39] and systems supported by linear spinor fields [12,40], or by using catastrophe theory [41].…”
Section: Conclusion and Discussionmentioning
confidence: 99%
“…This is a system of four coupled, 1st-order differential equations for the two metric fields T (r) and A(r) and the two fermion fields α(r) and β(r). Equations ( 10) and (11) arise directly from the Dirac Equation, whereas Eqs. ( 12) and ( 13) are the tt and rr components of the Einstein Equations.…”
Section: Einstein-dirac Systemmentioning
confidence: 99%