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Vortex structure in superfluid color-flavor locked quark matter

机译:超流彩色风味锁定夸克的涡旋结构

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The core region of a neutron star may feature quark matter in the color-flavor-locked (CFL) phase. The CFL condensate breaks the baryon number symmetry, such that the phenomenon of superfluidity arises. If the core of the star is rotating, vortices will form in the superfluid, carrying the quanta of angular momentum. In a previous study we have solved the question of stability of these vortices, where we found numerical proof of a conjectured instability, according to which superfluid vortices will decay into an arrangement of so-called semi-superfluid fluxtubes. Here we report first results of an extension of our framework that allows us to study multi-vortex dynamics. This will in turn enable us to investigate the structure of semi-superfluid string lattices, which could be relevant to study pinning phenomena at the boundary of the core.
机译:中子星的核心区域可以在色彩风味锁定(CFL)相中具有夸克物质。 CFL凝结物破坏了屈光度数对称性,使得出现超浊度的现象。如果恒星的核心旋转,则涡流将形成在超流体中,携带角动量的量子。在以前的一项研究中,我们解决了这些涡流的稳定性问题,在那里我们发现了猜想不稳定的数值证明,根据哪种超流涡流将腐烂成所谓的半超级流荧光素权才能。在这里,我们报告了我们框架延伸的首次结果,使我们能够研究多涡流动态。这轮流使我们能够研究半超级流动弦格的结构,这可能与在核心边界处学习钉扎现象。

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