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Bose enhancement, the Liouville effective action and the high multiplicity tail in p-A collisions

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arxiv 1805.09296 v2 pith:L2OMKKO3 submitted 2018-05-23 hep-ph nucl-th

classification hep-phnucl-th
keywords boseenhancementactioncalculatecollisionsdistributioneffectivefluctuations
verification ladder T0 review T1 audit T2 compute T3 formal
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In the framework of dense-dilute CGC approach we study fluctuations in the multiplicity of produced particles in p-A collisions. We show that the leading effect that drives the fluctuations is the Bose enhancement of gluons in the proton wave function. We explicitly calculate the moment generating function that resums the effects of Bose enhancement. We show that it can be understood in terms of the Liouville effective action for the composite field which is identified with the fluctuating density, or saturation momentum of the proton. The resulting probability distribution turns out to be very close to the gamma-distribution. We also calculate the first correction to this distribution which is due to pairwise Hanbury Brown-Twiss correlations of produced gluons.

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    A saturation-induced helicity-dependent A+ gluon field contributes at order Qs^6 to the two-particle dijet correlation and further suppresses the back-to-back peak in polarized e-A collisions.

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