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Diffusive scaling and the high-energy limit of deep inelastic scattering in QCD at large N-c

机译:大N-c下QCD的扩散尺度和深部非弹性散射的高能极限

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Within the limits of the large-N-c approximation (with N-c the number of colors), we establish the high-energy behaviour of the diffractive and inclusive cross-sections for deep inelastic scattering at fixed impact parameter. We demonstrate that for sufficiently high energies and up to very large values of Q(2), well above the proton average saturation momentum (Q(s)(2)), the cross-sections are dominated by dense fluctuations in the target wavefunction, that is, by the relatively rare gluon configurations which are at saturation on the resolution scale Q(2) of the virtual photon. This has important physical consequences, like the emergence of a new, diffusive, scaling, which replaces the "geometric scaling" property characteristic of the mean field approximation. To establish this, we shall rely on a dipole version of the Good-Walker formula for diffraction (that we shall derive here in the context of DIS), together with the high-energy estimates for the dipole scattering amplitudes which follow from the recently established evolution equations with pomeron loops and include the relevant fluctuations. We also find that, as a consequence of fluctuations, the diffiractive cross-section at high energy is dominated by the elastic scattering of the quark-antiquark component of the virtual photon, up to relatively large virtualities Q(2) (Q(s)(2)). (c) 2006 Elsevier B.V. All rights reserved.
机译:在大的N-c近似值的范围内(颜色数为N-c),我们建立了固定冲击参数下深非弹性散射的衍射面和包含面的高能行为。我们证明,对于足够高的能量和高达非常大的Q(2)值,远高于质子平均饱和动量(Q(s)(2)),截面主要由目标波函数的密集波动决定,也就是说,通过相对稀少的胶子结构,其在虚拟光子的分辨率范围Q(2)上处于饱和状态。这具有重要的物理后果,例如出现了新的,扩散的缩放比例,它取代了平均场近似的“几何缩放比例”特性。为此,我们将使用Good-Walker公式的偶极形式进行衍射(我们将在DIS的背景下得出),以及根据最近建立的偶极散射振幅的高能估计值具有波美隆环的演化方程,并包括相关的涨落。我们还发现,由于波动,高能级的衍射截面受虚拟光子的夸克-反夸克分量的弹性散射支配,直到相对较大的虚拟度Q(2)(Q( s)(2))。 (c)2006 Elsevier B.V.保留所有权利。

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