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Production of W + W ? pairs via γ * γ *W + W ? subprocess with photon transverse momenta

机译:<重点类型=“斜体”> W <强调类型=“斜体”> w 对通过γ * <强调类型=“斜体”>γ * w <上标> + <重点类型=“斜体”> w 子处理与光子横向动量

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A bstract We discuss production of W _(+) W _(?)pairs in proton-proton collisions induced by two-photon fusion including, for a first time, transverse momenta of incoming photons. The unintegrated inelastic fluxes (related to proton dissociation) of photons are calculated based on modern parametrizations of deep inelastic structure functions in a broad range of their arguments ( x and Q _(2)). In our approach we can get separate contributions of different W helicities states. Several one- and two-dimensional differential distributions are shown and discussed. The present results are compared to the results of previous calculations within collinear factorization approach. Similar results are found except of some observables such as e.g. transverse momentum of the pair of W _(+)and W _(?). We find large contributions to the cross section from the region of large photon virtualities. We show decomposition of the total cross section as well as invariant mass distribution into the polarisation states of both W bosons. The role of the longitudinal F ~( L )structure function is quantified. Its inclusion leads to a 4–5% decrease of the cross section, almost independent of M ~( WW ).
机译:Bstract我们讨论由双光子融合引起的质子 - 质子碰撞中的W _(+)W _(α)对的生产,包括第一次进入光子的横向动量。基于在它们的争论范围广泛的深度非弹性结构函数的现代测量仪(X和Q _(2))中,基于对光子的现代校位函数来计算光子的未防止的非弹性磁通(与质子解离)。在我们的方法中,我们可以获得不同的W螺旋状态的单独贡献。显示并讨论了几个单维差分分布。将目前的结果与共线分解方法的先前计算结果进行了比较。除了一些观察到之外,还发现了类似的结果。一对W _(+)和W _(?)的横向动量。我们为大型光子虚拟区域的横截面找到了大贡献。我们展示了总横截面的分解以及不变的质量分布到W玻色子的偏振状态。量化纵向F〜(L)结构功能的作用。其包涵体导致横截面减少4-5%,几乎独立于M〜(WW)。

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