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PHOTON-PHOTON COLLISIONS - PAST AND FUTURE

机译:光子-光子碰撞-过去和未来

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I give a brief review of the history of photon-photon physics and a survey of its potential at future electron-positron colliders. Exclusive hadron production processes in photon-photon and electron-photon collisions provide important tests of QCD at the amplitude level, particularly as measures of hadron distribution amplitudes. There are also important high energy γγ and eγ tests of quantum chromodynamics, including the production of jets in photon-photon collisions, deeply virtual Compton scattering on a photon target, and leading-twist single-spin asymmetries for a photon polarized normal to a production plane. Since photons couple directly to all fundamental fields carrying the electromagnetic current including leptons, quarks, W's, and supersymmetric particles, high energy γγ collisions will provide a comprehensive laboratory for Higgs production and exploring virtually every aspect of the Standard Model and its extensions. High energy back-scattered laser beams will thus greatly extend the range of physics of the International Linear Collider.
机译:我简要回顾了光子-光子物理学的历史,并综述了其在未来电子-正电子对撞机中的潜力。光子-光子和电子-光子碰撞中的独家强子产生过程在幅度水平上提供了重要的QCD测试,尤其是作为强子分布幅度的度量。量子色动力学还具有重要的高能γγ和eγ检验,包括在光子-光子碰撞中产生射流,在光子靶上进行深虚拟康普顿散射以及对于垂直于产品偏振的光子的前旋单旋不对称性飞机。由于光子直接耦合到所有载有电磁电流的基本场,包括轻子,夸克,W和超对称粒子,因此高能γγ碰撞将为希格斯的产生和探索标准模型及其扩展的各个方面提供一个全面的实验室。因此,高能反向散射激光束将大大扩展国际直线对撞机的物理范围。

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