论文标题
弹性散射的演化方程
Evolution equation for elastic scattering of hadrons
论文作者
论文摘要
我们使用基于Regge场理论的进化方程将HADRON的高能弹性散射变成了初始值问题,该方程具有复杂的非线性反应 - 扩散方程的形式,并且能量对数的时间播放。最初的条件由数据驱动的模型提供,用于振幅的实际和虚构部分。 LHC能量的PP差分横截面和正向数量的数值计算与延伸到延伸至衍射锥的实验数据非常吻合。此外,我们表明,在当前可访问能量下,非线性效应起着重要作用,因为影响参数空间剖面接近单位性界限。该方程式还预测了文献中讨论的其他一些效果,例如核物质的空心或动量转移中固定点的存在。
We turn high energy elastic scattering of hadrons into an initial value problem using an evolution equation based on the Regge Field Theory, which has a form of the complex nonlinear reaction-diffusion equation, with time being played by the logarithm of energy. The initial conditions are provided by the data-driven models for the real and imaginary parts of the amplitude. Numerical calculations of pp differential cross sections and forward quantities for LHC energies agree very well with experimental data extending up to, and including the diffractive cone. Furthermore, we show that at current accessible energies the non-linear effects play an important role, as the impact parameter space profiles approach the unitarity bound. The equation also predicts some other effects discussed in the literature, like the hollowness of nuclear matter or existence of stationary points in momentum transfer t.