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Diffractive dijet production in impact parameter dependent saturation models

机译:依赖于冲击参数的饱和度模型中的衍射Dijet生产

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摘要

We study coherent diffractive dijet production in electron-hadron and electron-nucleus collisions within the dipole picture. We provide semianalytic results for the differential cross section and elliptic anisotropy in the angle between dijet transverse momentum and hadron recoil momentum. We demonstrate the direct relation between angular moments of the dipole amplitude in coordinate space and angular moments of the diffractive dijet cross sections. To perform explicit calculations, we employ two different saturation models, extended to include the target geometry. In the limit of large photon virtuality or quark masses, we find fully analytic results that allow direct insight into how the differential cross section and elliptic anisotropy depend on the saturation scale, target geometry, and kinematic variables. We further provide numerical results for more general kinematics in collisions at a future electron-ion collider, and study the effects of approaching the saturated regime on diffractive dijet observables.
机译:我们研究偶极子图像内电子强子和电子核碰撞中的相干衍射双喷产生。我们提供了Dijet横向动量与强子后坐力之间的角度的微分截面和椭圆各向异性的半解析结果。我们证明了坐标空间中偶极子振幅的角矩与衍射双射流横截面角矩之间的直接关系。为了执行显式计算,我们采用了两种不同的饱和度模型,将其扩展为包括目标几何形状。在大光子虚拟度或夸克质量的限制下,我们找到了充分的分析结果,这些结果可以直接了解微分截面和椭圆各向异性如何取决于饱和度比例,目标几何形状和运动学变量。我们进一步为未来电子离子对撞机的碰撞中更一般的运动学提供了数值结果,并研究了接近饱和态对衍射双射可观察物的影响。

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