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首页> 外文期刊>Journal of Physics, G. Nuclear and Particle Physics: An Institute of Physics Journal >A new statistical method for the structure of the inner crust of neutron stars
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A new statistical method for the structure of the inner crust of neutron stars

机译:中子恒星内壳结构的一种新统计方法

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We investigated the structure of the low density regions of the inner crust of neutron stars using the Hartree-Fock-Bogoliubov (HFB) model to predict the proton content Z of the nuclear clusters and, together with the lattice spacing, the proton content of the crust as a function of the total baryonic density rho(b). The exploration of the energy surface in the (Z, rho(b)) configuration space and the search for the local minima require thousands of calculations. Each of them implies a HFB calculation in a box with a large number of particles, thus making the whole process very demanding. In this work, we apply a statistical model called Gaussian process emulator that makes the exploration of the energy surface ten times faster. We also present a novel treatment of the HFB equations that leads to an uncertainty on the total energy of approximate to 4 keV per particle. Such a high precision is necessary to distinguish neighbour configurations around the energy minima.
机译:我们研究了使用Hartree-Fock-Bogoliubov(HFB)模型的中子恒星内壳的低密度区域的结构,以预测核簇的质子含量Z,以及与晶格间距的质子含量 作为总辐射密度rho(b)的函数的壳。 (Z,Rho(B))配置空间中的能量表面和局部最小值的搜索需要探索千分之一的计算。 它们中的每一个都意味着具有大量粒子的盒子中的HFB计算,从而使整个过程非常苛刻。 在这项工作中,我们应用一个称为高斯工艺仿真器的统计模型,使能量表面速度快十倍。 我们还提出了对HFB方程的新颖治疗,其导致对每种粒子的近似近4keV的总能量的不确定性。 在能量最小值周围区分邻居配置是必要的这种高精度。

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