论文标题
超流体中子物质有扭曲
Superfluid neutron matter with a twist
论文作者
论文摘要
超流体中子物质是中子星组成中的关键成分。内皮的物理学在很大程度上取决于其$ s $ wave中子超级流体的物理,这使它的存在通过脉冲星的毛刺和中子星冷却的修改而闻名。此外,随着最近对中子恒星合并的重力波观察,对于这些紧凑型恒星的问题,需要一个状态方程,并且对中子超流体的模型无关治疗很重要。可以指导针对有限系统开发的\ TextIt {ab Initio}技术,以执行热力学极限的外推,并实现这种独立于模型的无限超级流体中子物质的依赖模型的提取。为了告知这种推断方案,我们在扭曲边界条件下,使用与模型无关的奇数差异进行了对中子$^1S_0 $配对差距的计算。虽然扭曲边界条件的实践在固态物理学中是标准配置,并且过去曾多次使用以减少有限尺寸的效果,但这是在配对的背景下首次使用它。我们发现,一种平均扭曲的方法会大大降低有限尺寸的效果,从而使$ N \ gtrapprox 50 $的系统从无限系统的$ 2 \%$误差率范围内。这可以显着减少超氟中子物质数量提取的外推相关误差。
Superfluid neutron matter is a key ingredient in the composition of neutron stars. The physics of the inner crust is largely dependent on that of its $S$-wave neutron superfluid which has made its presence known through pulsar glitches and modifications on the neutron star cooling. Moreover, with recent gravitational-wave observations of neutron star mergers, the need for an equation of state for the matter of these compact stars is further accentuated and a model-independent treatment of neutron superfluidity is important. \textit{Ab initio} techniques developed for finite systems can be guided to perform extrapolations to the thermodynamic limit and attain this model-independent extraction of various quantities of infinite superfluid neutron matter. To inform such an extrapolation scheme, we performed calculations of the neutron $^1S_0$ pairing gap using the model-independent odd-even staggering in the context of the particle-conserving, projected BCS theory under twisted boundary conditions. While the practice of twisted boundary conditions is standard in solid state physics and has been used repeatedly in the past to reduce finite-size effects, this is the first time it is employed in the context of pairing. We find that a twist-averaging approach results in a substantial reduction of the finite-size effects, bringing systems with $N\gtrapprox 50$ within a $2\%$ error margin from the infinite system. This can significantly reduce extrapolation-related errors in the extraction of superfluid neutron matter quantities.