论文标题
从旋转胶子中的喷气子结构中的量子干扰
Quantum Interference in Jet Substructure from Spinning Gluons
论文作者
论文摘要
撞机实验中的量子染色体动力学(QCD)的一种新兴现象,其详细的内部结构编码了有关高能量夸克和胶子相互作用,以及它们将其限制在颜色中性的Hadron中。喷气机内的能量流的特征是能量流动器的相关函数,三分相关器是第一个具有非平凡形状依赖性的相关器,在揭示QCD动力学方面发挥了特殊作用。在这封信中,我们在强耦合常数中对所有订单进行了对所有订单的研究,在两个探测器被挤压在一起的极限下。我们表明,通过将两个挤压检测器旋转相对于第三个挤压探测器,而将$ \ cos(2x)$依赖性旋转,依赖于$+/ - $ helicity的量子干扰产生。这可以被视为用喷气子结构进行的双缝实验,它提供了直接探测JET的亚基的量子性质,以及QCD中的横向自旋物理。为了促进我们的全端口分析,我们在QCD中采用了灯射线操作员的操作员产品扩展(OPE),并在QCD中开发它。我们在现实世界中使用轻射射线OPE的应用将其确立为一种强大的理论工具,并具有广泛的Jet子结构研究。
Collimated sprays of hadrons, called jets, are an emergent phenomenon of Quantum Chromodynamics (QCD) at collider experiments, whose detailed internal structure encodes valuable information about the interactions of high energy quarks and gluons, and their confinement into color-neutral hadrons. The flow of energy within jets is characterized by correlation functions of energy flow operators, with the three-point correlator, being the first correlator with non-trivial shape dependence, playing a special role in unravelling the dynamics of QCD. In this Letter we initiate a study of the three-point energy correlator to all orders in the strong coupling constant, in the limit where two of the detectors are squeezed together. We show that by rotating the two squeezed detectors with respect to the third by an angle $ϕ$, a $\cos (2ϕ)$ dependence arising from the quantum interference between intermediate virtual gluons with $+/-$ helicity is imprinted on the detector. This can be regarded as a double slit experiment performed with jet substructure, and it provides a direct probe of the ultimately quantum nature of the substructure of jets, and of transverse spin physics in QCD. To facilitate our all-orders analysis, we adopt the Operator Product Expansion (OPE) for light-ray operators in conformal field theory and develop it in QCD. Our application of the light-ray OPE in real world QCD establishes it as a powerful theoretical tool with broad applications for the study of jet substructure.