Medium-induced gluon radiation and colour decoherence beyond the soft approximation

Nuclear Theory (nucl-th) Nuclear and High Energy Physics High Energy Physics - Phenomenology High Energy Physics - Phenomenology (hep-ph) Nuclear Theory Heavy ion phenomenology Jets 0103 physical sciences FOS: Physical sciences 01 natural sciences
DOI: 10.1007/jhep02(2015)119 Publication Date: 2015-02-19T22:46:24Z
ABSTRACT
v2: mistake in Dirac algebra corrected, corresponding conclusion changed accordingly, BDMPS limit added. Accepted by JHEP<br/>We derive the in-medium gluon radiation spectrum off a quark within the path integral formalism at finite energies, including all next-to-eikonal corrections in the propagators of quarks and gluons. Results are computed for finite formation times, including interference with vacuum amplitudes. By rewriting the medium averages in a convenient manner we present the spectrum in terms of dipole cross sections and a colour decoherence parameter with the same physical origin as that found in previous studies of the antenna radiation. This factorisation allows us to present a simple physical picture of the medium-induced radiation for any value of the formation time, that is of interest for a probabilistic implementation of the modified parton shower. Known results are recovered for the particular cases of soft radiation and eikonal quark and for the case of a very long medium, with length much larger than the average formation times for medium-induced radiation. Technical details of the computation of the relevant $n$-point functions in colour space and of the required path integrals in transverse space are provided. The final result completes the calculation of all finite energy corrections for the radiation off a quark in a QCD medium that exist in the small angle approximation and for a recoilless medium.<br/>
SUPPLEMENTAL MATERIAL
Coming soon ....
REFERENCES (63)
CITATIONS (52)
EXTERNAL LINKS
PlumX Metrics
RECOMMENDATIONS
FAIR ASSESSMENT
Coming soon ....
JUPYTER LAB
Coming soon ....