2000•Unpublished venueRequires access

QCD at Photon Colliders

Jan Kwieciński

Open publisher page 3 citations

Abstract

The novel possibilities of probing the photon structure and high energy limit of QCD at photon colliders are summarised. We discuss the photon structure function $F_2^{\\gamma}(x,Q^2)$, the gluon distribution in the photon and the spin dependent structure function $g_1^{\\gamma}(x,Q^2)$ of the photon and emphasise advantages of the photon colliders for measuring these quantities. The possibility of probing the QCD pomeron and odderon in $\\gamma\\gamma$ and $e \\gamma$ collisions is also described.

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What this paper is about

The novel possibilities of probing the photon structure and high energy limit of QCD at photon colliders are summarised. We discuss the photon structure function $F_2^{\\gamma}(x,Q^2)$, the gluon distribution in the photon and the spin dependent structure function $g_1^{\\gamma}(x,Q^2)$ of the photon and emphasise advantages of the photon colliders for measuring these quantities. The possibility of probing the QCD pomeron and odderon in $\\gamma\\gamma$ and $e \\gamma$ collisions is also described.

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Available abstract

The novel possibilities of probing the photon structure and high energy limit of QCD at photon colliders are summarised. We discuss the photon structure function $F_2^{\\gamma}(x,Q^2)$, the gluon distribution in the photon and the spin dependent structure function $g_1^{\\gamma}(x,Q^2)$ of the photon and emphasise advantages of the photon colliders for measuring these quantities. The possibility of probing the QCD pomeron and odderon in $\\gamma\\gamma$ and $e \\gamma$ collisions is also described.

Key concepts: Physics, Quantum chromodynamics, Particle physics, Photon structure function, Photon, Gluon, Pomeron, Nuclear physics

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