2012
DOI: 10.1007/jhep04(2012)064
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The radiation pattern of a QCD antenna in a dilute medium

Abstract: Radiative interferences in the multi-parton shower is the building block of QCD jet physics in vacuum. The presence of a hot medium made of quarks and gluons is expected to alter this interference pattern. To study these effects, we derive the gluon emission spectrum off a color-correlated quark-antiquark pair (antenna) traversing a colored medium to first order in the medium density. The resulting induced gluon distribution is found to be governed by the hardest scale of the problem. In our setup, this can ei… Show more

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Cited by 50 publications
(77 citation statements)
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“…(4.2). It is nevertheless important to point out that the above considerations imply on the other hand that the interferences are instrumental at short timescales, t < t d , and in particular in the regime where t d > L. In this case, the interferences are weakly suppressed and decoherence is partial, see [25][26][27].…”
Section: Jhep01(2013)031mentioning
confidence: 99%
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“…(4.2). It is nevertheless important to point out that the above considerations imply on the other hand that the interferences are instrumental at short timescales, t < t d , and in particular in the regime where t d > L. In this case, the interferences are weakly suppressed and decoherence is partial, see [25][26][27].…”
Section: Jhep01(2013)031mentioning
confidence: 99%
“…In order to study the importance of these radiative interferences, lately the gluon emission spectrum off a time-like quark-antiquark (qq) antenna was calculated. In [25,26] we considered an antenna traversing a relatively thin medium, i.e., assuming only one scattering in the medium background potential. In [27], on the other hand, we resummed multiple scatterings in the limit of soft gluon emission.…”
Section: Jhep01(2013)031mentioning
confidence: 99%
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