论文标题

手性电势与动量空间中半局部正则化的应用到分解过程

Applications of the chiral potential with the semi-local regularization in momentum space to the disintegration processes

论文作者

Urbanevych, V., Skibiński, R., Witała, H., Golak, J., Topolnicki, K., Grassi, A., Epelbaum, E., Krebs, H.

论文摘要

我们将手动电位与动量空间半局部正规化应用于$^2 $ h和$^3 $ He He光构成过程,并将(抗)中微子诱导的Deuteron分解反应应用于(抗)中微子诱导的反应。具体而言,已经计算了差异横截面,光子分析能力和最终质子极化,已计算出光子能量30 MeV和100 MeV处的deuteron光构成。对于$^3 $ he He He He的光差预测,针对高达120 MeV的光子能量提供了半包含和独家差分截面的预测。计算总横截面,该截面是针对(抗)低于200 MeV的(抗)中微子能量的(抗)中微子能量的(抗)中微子分解的。基于Argonne V18电位或在坐标空间中施加正则化的旧手性力的预测用于比较。使用第六阶的第五阶性手性核子核子电位,从第六阶贡献了主导贡献,使我们能够获得对所考虑的反应和可观察物的收敛预测。我们基于最新的半本地手性电势的结果显示,与先前报道的具有坐标空间调节器的截止值相比,所考虑的电动可观察到的截止依赖性甚至更小。然而,与非极化横截面相比,在Deuteron光构成过程中,一些研究的极化可观察到对调节剂值的敏感性更大。动力空间中的手性势化半局部化也产生了结果与手性阶的快速收敛。这些功能使二手潜力成为研究电子过程的高质量工具。

We apply the chiral potential with the momentum space semi-local regularization to the $^2$H and $^3$He photodisintegration processes and to the (anti)neutrino induced deuteron breakup reactions. Specifically, the differential cross section, the photon analyzing power and the final proton polarization have been calculated for the deuteron photodisintegration at the photon energies 30 MeV and 100 MeV. For the $^3$He photodisintegration predictions for the semi-inclusive and exclusive differential cross sections are presented for the photon energies up to 120 MeV. The total cross section is calculated for the (anti)neutrino disintegrations of the deuteron for the (anti)neutrino energies below 200 MeV. The predictions based on the Argonne V18 potential or on the older chiral force with regularization applied in coordinate space are used for comparison. Using the fifth order chiral nucleon-nucleon potential supplemented with dominant contributions from the sixth order allows us to obtain converged predictions for the regarded reactions and observables. Our results based on the newest semi-local chiral potentials show even smaller cutoff dependence for the considered electroweak observables than the previously reported ones with a coordinate-space regulator. However, some of the studied polarization observables in the deuteron photodisintegration process reveal more sensitivity to the regulator value than the unpolarized cross section. The chiral potential regularized semi-locally in momentum space yields also fast convergence of results with the chiral order. These features make the used potential a high quality tool to study electroweak processes.

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