论文标题
使用两体映射网格法的高效三体计算
Efficient three-body calculations with a two-body mapped grid method
论文作者
论文摘要
我们研究了将超速三体散射与有效坐标空间方案结合的标准动量空间方法的前景,以解决潜在的两体问题。在许多方案中,两体问题在数值上仅限于有限的颗粒距离$ r_ \ mathrm {b} $。我们使用成对的方形孔电位分析了这种两体限制对两体和三体水平的影响,从而允许进行分析性的两体溶液和更现实的Lennard-Jones van der waals潜力来建模原子相互作用。我们发现两体$ t $ operator在$ r_ \ mathrm {b} $中呈指数收敛。将$ r_ \ mathrm {b} $设置为交互范围的2000倍,当散射长度较小时,可以准确确定三体重组率,而与$ r_ \ mathrm {b} $相比,而最低的efimov特征的位置则准确至百分比。此外,我们发现,通过引入动量截止,即使对于深范德华电势,也可以确定良好近似中的三体参数。
We investigate the prospects of combining a standard momentum space approach for ultracold three-body scattering with efficient coordinate space schemes to solve the underlying two-body problem. In many of those schemes the two-body problem is numerically restricted up to a finite interparticle distance $r_\mathrm{b}$. We analyze effects of this two-body restriction on the two- and three-body level using pairwise square-well potentials that allow for analytic two-body solutions and more realistic Lennard-Jones van der Waals potentials to model atomic interactions. We find that the two-body $t$-operator converges exponentially in $r_\mathrm{b}$ for the square-well interaction. Setting $r_\mathrm{b}$ to 2000 times the range of the interaction, the three-body recombination rate can be determined accurately up to a few percent when the magnitude of the scattering length is small compared to $r_\mathrm{b}$, while the position of the lowest Efimov features is accurate up to the percent level. In addition we find that with the introduction of a momentum cut-off, it is possible to determine the three-body parameter in good approximation even for deep van der Waals potentials.