论文标题
计算领先喷气机的能量损失
Calculating the energy loss of leading jets
论文作者
论文摘要
喷气机的能量损失机制在核和高能物理学中起着核心作用。我们提出直接测量领先喷气机的能量损失,并在真空中以近代领先的对数(NLL $'$)精度进行计算。可以用构成概率密度的射流功能来描述前导喷气机的形成,从而可以对平均能量损失的扰动计算。我们确定以下三个标准,用于直接测量横截面级别的喷气能量损失。 $ i)$我们测量一个定义明确的对象,即领先的喷气机,在该对象可以根据概率密度表示形成过程。 $ ii)$。此外,我们还需要对硬参考量表进行测量,以定义喷气能量损失。 $ iii)$以领先的对数准确性,我们要求可以通过Parton能量损失来确定喷气能量损失。我们讨论合适的可观察结果,并提供数值结果,包括使用Parton淋浴蒙特卡洛方法,包括阈值校正。
The energy loss mechanism of jets plays a central role in nuclear and high energy physics. We propose direct measurements of the energy loss of leading jets and perform a calculation at next-to-leading logarithmic (NLL$'$) accuracy in the vacuum. The formation of leading jets can be described by jet functions which constitute probability densities and thus allow for a perturbative calculation of the average the energy loss. We identify the following three criteria for a direct measurement of jet energy loss at the cross section level. $i)$ We measure a well defined object, the leading jet, where the formation process can be expressed in terms of a probability density. $ii)$ In addition, we need a measurement of a hard reference scale with respect to which jet energy loss is defined. $iii)$ At leading logarithmic accuracy, we require that the jet energy loss can be identified with parton energy loss. We discuss suitable observables and present numerical results including threshold corrections by making use of a parton shower Monte Carlo approach.