In-medium loop corrections and longitudinally polarized gauge bosons in high-energy showers

Author:

Arnold Peter,Iqbal Shahin

Abstract

Abstract The splitting processes of bremsstrahlung and pair production in a medium are coherent over large distances in the very high energy limit, which leads to a suppression known as the Landau-Pomeranchuk-Migdal (LPM) effect. We continue study of the case when the coherence lengths of two consecutive splitting processes overlap (which is important for understanding corrections to standard treatments of the LPM effect in QCD), avoiding soft-emission approximations. In this particular paper, we show (i) how the “instantaneous” interactions of Light-Cone Perturbation Theory must be included in the calculation to account for effects of longitudinally-polarized gauge bosons in intermediate states, and (ii) how to compute virtual corrections to LPM emission rates, which will be necessary in order to make infrared-safe calculations of the characteristics of in-medium QCD showering of high-energy partons. In order to develop these topics in as simple a context as possible, we will focus in the current paper not on QCD but on large-N f QED, where N f is the number of electron flavors.

Publisher

Springer Science and Business Media LLC

Subject

Nuclear and High Energy Physics

Reference38 articles.

1. L.D. Landau and I. Pomeranchuk, Limits of applicability of the theory of bremsstrahlung electrons and pair production at high-energies (in Russian), Dokl. Akad. Nauk Ser. Fiz. 92 (1953) 535 [INSPIRE].

2. L.D. Landau and I. Pomeranchuk, Electron cascade process at very high energies (in Russian), Dokl. Akad. Nauk Ser. Fiz. 92 (1953) 735 [INSPIRE].

3. A.B. Migdal, Bremsstrahlung and pair production in condensed media at high-energies, Phys. Rev. 103 (1956) 1811 [INSPIRE].

4. J.-P. Blaizot and Y. Mehtar-Tani, Renormalization of the jet-quenching parameter, Nucl. Phys. A 929 (2014) 202 [arXiv:1403.2323] [INSPIRE].

5. E. Iancu, The non-linear evolution of jet quenching, JHEP 10 (2014) 095 [arXiv:1403.1996] [INSPIRE].

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