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The effect of dynamical quark mass on the calculation of a strange quark star's structure
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作者 Gholam Hossein Bordbar Babak Ziaei 《Research in Astronomy and Astrophysics》 SCIE CAS CSCD 2012年第5期540-550,共11页
We discuss the dynamical behavior of strange quark matter components, in particular the effects of density dependent quark mass on the equation of state of strange quark matter. The dynamical masses of quarks are comp... We discuss the dynamical behavior of strange quark matter components, in particular the effects of density dependent quark mass on the equation of state of strange quark matter. The dynamical masses of quarks are computed within the Nambu-Jona-Lasinio model, then we perform strange quark matter calculations em- ploying the MIT bag model with these dynamical masses. For the sake of compar- ing dynamical mass interaction with QCD quark-quark interaction, we consider the one-gluon-exchange term as the effective interaction between quarks for the MIT bag model. Our dynamical approach illustrates an improvement in the obtained equation of state values. We also investigate the structure of the strange quark star using Tolman- Oppenheimer-Volkoff equations for all applied models. Our results show that dynamical mass interaction leads to lower values for gravitational mass. 展开更多
关键词 Stars dense matter - equation of state - ISM structure -- supemova remnants
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Calculation of the structural properties of a strange quark star in the presence of a strong magnetic field using a density dependent bag constant 被引量:1
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作者 Gholam Hossein Bordbar Hajar Bahri Fatemeh Kayanikhoo 《Research in Astronomy and Astrophysics》 SCIE CAS CSCD 2012年第9期1280-1290,共11页
We have calculated the structural properties of a strange quark star with a static model in the presence of a strong magnetic field. To this end, we use the MIT bag model with a density dependent bag constant. To para... We have calculated the structural properties of a strange quark star with a static model in the presence of a strong magnetic field. To this end, we use the MIT bag model with a density dependent bag constant. To parameterize the density dependence of the bag constant, we have used our results for the lowest order constrained variational calculation of the asymmetric nuclear matter. By calculating the equation of state of strange quark matter, we have shown that the pressure of this system increases by increasing both density and magnetic field. Finally, we have investigated the effect of density dependence of the bag constant on the structural properties of a strange quark star. 展开更多
关键词 stars: dense matter equation of state ISM: structure supernova remnants
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