论文标题
高能涡流状态碰撞的阈值效应
Threshold effects in high-energy vortex state collisions
论文作者
论文摘要
在非平面波状态下制备的具有非平凡相结构的颗粒的碰撞,例如具有可调轨道角动量(OAM)的涡流状态,在原子,核和高能物理学方面开放的新型机会不可用于传统散射实验。最近,有人争辩说,诸如$γd\ to pn $和$γp\ totoΔ^+$之类的光诱导的过程应显示出显着的阈值偏移和相当的横截面增强功能,并且是针对沃特克斯效率轴的目标$ b $的较大的横截面$ b $。在这项工作中,我们从理论上探讨了这种效应是否存在于散射过程的量子场理论处理中。我们不依赖于尖的,非膨胀的目标粒子的半经典假设,而是考虑重粒子对产生的玩具过程,在两个光颗粒的碰撞中,作为拉格雷 - 高斯和紧凑型高斯波浪包装,并特别注意横截面的阈值行为。我们确实观察到由于波数据包的非单色性而导致的阈值涂抹,但我们没有确认接近阈值的增强。取而代之的是,与两个高斯波数据包碰撞相比,我们发现$ b \至0 $的OAM相关倾角。
Collisions of particles prepared in non--plane-wave states with a non-trivial phase structure, such as vortex states carrying an adjustable orbital angular momentum (OAM), open novel opportunities in atomic, nuclear, and high-energy physics unavailable for traditional scattering experiments. Recently, it was argued that photoinduced processes such as $γd \to pn$ and $γp \to Δ^+$ initiated by a high-energy vortex photon should display a remarkable threshold shift and a sizable cross section enhancement as the impact parameter $b$ of the target hadron with respect to the vortex photon axis goes to zero. In this work, we theoretically explore whether this effect exists within the quantum-field-theoretic treatment of the scattering process. We do not rely on the semiclassical assumption of pointlike, non-spreading target particle and, instead, consider the toy process of heavy particle pair production in collision of two light particles prepared as a Laguerre-Gaussian and a compact Gaussian wave packets, paying special attention to the threshold behavior of the cross section. We do observe threshold smearing due to non-monochromaticity of the wave packets, but we do not confirm the near-threshold enhancement. Instead we find an OAM-related dip at $b\to 0$ as compared with the two Gaussian wave packet collision.