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Interface effects of strange quark matter with density dependent quark masses
We study the interface effects in strangelets adopting mean-field approximation (MFA). Based on an equivparticle model, the linear confinement and leading-order perturbative interactions are included with density-dependent quark masses. By increasing the confinement strength, the surface tension and...
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Published in: | Physical review. D 2018-08, Vol.98 (3), Article 034031 |
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description | We study the interface effects in strangelets adopting mean-field approximation (MFA). Based on an equivparticle model, the linear confinement and leading-order perturbative interactions are included with density-dependent quark masses. By increasing the confinement strength, the surface tension and curvature term of strange quark matter (SQM) become larger, while the perturbative interaction does the opposite. For those parameters constrained according to the 2 M⊙ strange star, the surface tension is ∼2.4 MeV/fm2, while unstable SQM indicates a slightly larger surface tension. The obtained results are then compared with those predicted by the multiple reflection expansion (MRE) method. In contrast to the bag model case, it is found that MRE method overestimates the surface tension and underestimates the curvature term. To reproduce our results, the density of states in the MRE approach should be modified by proper damping factors. |
doi_str_mv | 10.1103/PhysRevD.98.034031 |
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Based on an equivparticle model, the linear confinement and leading-order perturbative interactions are included with density-dependent quark masses. By increasing the confinement strength, the surface tension and curvature term of strange quark matter (SQM) become larger, while the perturbative interaction does the opposite. For those parameters constrained according to the 2 M⊙ strange star, the surface tension is ∼2.4 MeV/fm2, while unstable SQM indicates a slightly larger surface tension. The obtained results are then compared with those predicted by the multiple reflection expansion (MRE) method. In contrast to the bag model case, it is found that MRE method overestimates the surface tension and underestimates the curvature term. To reproduce our results, the density of states in the MRE approach should be modified by proper damping factors.</description><identifier>ISSN: 2470-0010</identifier><identifier>EISSN: 2470-0029</identifier><identifier>DOI: 10.1103/PhysRevD.98.034031</identifier><language>eng</language><publisher>College Park: American Physical Society</publisher><subject>Confinement ; Curvature ; Damping ; Quarks ; Surface tension</subject><ispartof>Physical review. 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D</jtitle></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext</fulltext></delivery><addata><au>Xia, Cheng-Jun</au><au>Peng, Guang-Xiong</au><au>Sun, Ting-Ting</au><au>Guo, Wan-Lei</au><au>Lu, Ding-Hui</au><au>Jaikumar, Prashanth</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Interface effects of strange quark matter with density dependent quark masses</atitle><jtitle>Physical review. D</jtitle><date>2018-08-01</date><risdate>2018</risdate><volume>98</volume><issue>3</issue><artnum>034031</artnum><issn>2470-0010</issn><eissn>2470-0029</eissn><abstract>We study the interface effects in strangelets adopting mean-field approximation (MFA). Based on an equivparticle model, the linear confinement and leading-order perturbative interactions are included with density-dependent quark masses. By increasing the confinement strength, the surface tension and curvature term of strange quark matter (SQM) become larger, while the perturbative interaction does the opposite. For those parameters constrained according to the 2 M⊙ strange star, the surface tension is ∼2.4 MeV/fm2, while unstable SQM indicates a slightly larger surface tension. The obtained results are then compared with those predicted by the multiple reflection expansion (MRE) method. In contrast to the bag model case, it is found that MRE method overestimates the surface tension and underestimates the curvature term. To reproduce our results, the density of states in the MRE approach should be modified by proper damping factors.</abstract><cop>College Park</cop><pub>American Physical Society</pub><doi>10.1103/PhysRevD.98.034031</doi><oa>free_for_read</oa></addata></record> |
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subjects | Confinement Curvature Damping Quarks Surface tension |
title | Interface effects of strange quark matter with density dependent quark masses |
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