Department of Physics, University of New Hampshire, Durham, New Hampshire 03824-3568, USA.
Phys Rev Lett. 2012 Oct 26;109(17):172001. doi: 10.1103/PhysRevLett.109.172001. Epub 2012 Oct 23.
The low-energy nΣ(-) interactions determine, in part, the role of the strange quark in dense matter, such as that found in astrophysical environments. The scattering phase shifts for this system are obtained from a numerical evaluation of the QCD path integral using the technique of lattice QCD. Our calculations, performed at a pion mass of m(π)~389 MeV in two large lattice volumes and at one lattice spacing, are extrapolated to the physical pion mass using effective field theory. The interactions determined from lattice QCD are consistent with those extracted from hyperon-nucleon experimental data within uncertainties and strengthen model-dependent theoretical arguments that the strange quark is a crucial component of dense nuclear matter.
低能Σ(-)相互作用在一定程度上决定了奇异夸克在致密物质(如天体物理环境中存在的物质)中的作用。该系统的散射相移通过使用格点 QCD 技术对 QCD 路径积分进行数值评估来获得。我们的计算是在两个大晶格体积和一个晶格间距下,在介子质量 m(π)~389 MeV 处进行的,并使用有效场论将其外推到物理介子质量。从格点 QCD 确定的相互作用与从超核-核子实验数据中提取的相互作用在不确定性范围内是一致的,并加强了基于模型的理论论点,即奇异夸克是致密核物质的关键组成部分。