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        Quantum Chromodynamics at High Energy

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        Author(s)
        Kovchegov, Yuri V.
        Levin, Eugene
        Collection
        SCOAP3 for Books
        Language
        English
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        Abstract
        Filling a gap in the current literature, this book is dedicated to high energy quantum chromodynamics (QCD) including parton saturation and the color glass condensate (CGC). It presents groundbreaking progress on the subject and describes many problems at the forefront of research, bringing postgraduate students, theorists and interested experimentalists up to date with research in this field. The material is presented in a pedagogical way, with numerous examples and exercises. Discussion ranges from the quasi-classical McLerran–Venugopalan model to the linear BFKL and nonlinear BK/JIMWLK small-x evolution equations. The authors adopt both a theoretical and an experimental outlook, and present the physics of strong interactions in a universal way, making it useful for physicists from across high energy and nuclear physics, and applicable to processes studied at high energy accelerators around the world. This title, first published in 2013, has been reissued as an Open Access publication on Cambridge Core.
        URI
        https://library.oapen.org/handle/20.500.12657/59216
        Keywords
        Particle physics
        DOI
        10.1017/9781009291446
        ISBN
        9781009291446, 9781009291446, 9781009291415, 9781009291422
        Publisher
        Cambridge University Press
        Publication date and place
        Cambridge, 2013
        Grantor
        • SCOAP3 - [...]
        Classification
        Nuclear physics
        Pages
        339
        Rights
        https://creativecommons.org/licenses/by-nc-nd/4.0/
        • Imported or submitted locally

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        License

        • If not noted otherwise all contents are available under Attribution 4.0 International (CC BY 4.0)

        Credits

        • logo EU
        • This project received funding from the European Union's Horizon 2020 research and innovation programme under grant agreement No 683680, 810640, 871069 and 964352.

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