2014
DOI: 10.1016/j.physletb.2014.09.005
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Small- x dynamics in forward–central dijet correlations at the LHC

Abstract: We provide a description, within the High Energy Factorization formalism, of central-forward dijet correlation data measured by the CMS experiment and the predictions for nuclear modification ratio R p A in p + Pb collisions. In our study, we use the unintegrated gluon density derived from the BFKL and BK equations supplemented with subleading corrections and a hard scale dependence. The latter is introduced at the final step of the calculation by re-weighting the Monte Carlo generated events using suitable Su… Show more

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Cited by 59 publications
(94 citation statements)
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References 54 publications
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“…The equations that combine such effects with the small-x evolution [55,56] show a nontrivial interplay between the non-linearities and the µ 2 dependence and this may, in particular, weaken the saturation effects. At the linear level, the so-called single step inclusion of the hard-scale effects (as demonstrated in [17]) helps in the description of forward-central dijet data, therefore this direction seems to be relevant in order to provide complete predictions. Furthermore, first estimates of azimuthal decorrelations of the forward-forward dijets in the HEF framework, with inclusion of hard scale effects and non-linearities, show that they are of similar relevance for this process [33].…”
Section: Discussionmentioning
confidence: 99%
See 1 more Smart Citation
“…The equations that combine such effects with the small-x evolution [55,56] show a nontrivial interplay between the non-linearities and the µ 2 dependence and this may, in particular, weaken the saturation effects. At the linear level, the so-called single step inclusion of the hard-scale effects (as demonstrated in [17]) helps in the description of forward-central dijet data, therefore this direction seems to be relevant in order to provide complete predictions. Furthermore, first estimates of azimuthal decorrelations of the forward-forward dijets in the HEF framework, with inclusion of hard scale effects and non-linearities, show that they are of similar relevance for this process [33].…”
Section: Discussionmentioning
confidence: 99%
“…Separately, the HEF and TMD approaches to dijet production have been extensively studied in the literature [11,[15][16][17][18] and [12,[19][20][21][22][23][24][25], but little connection has been made between them so far. The first result of this paper is to reveal that connection, in the context of dilute-dense collisions, and to show that, in fact, they are both contained in the CGC description.…”
Section: Jhep09(2015)106mentioning
confidence: 99%
“…The prescription for including the hard scale, µ, dependence in the small x gluon evolution equations using the Sudakov form factor, proposed in Refs. [94,95], is applied. (For other approaches, see Ref.…”
Section: Kotko K Kutak and S Sapeta)mentioning
confidence: 99%
“…Furthermore it has been recognized in [1] that by studies of associated production of electroweak bosons and jets may provide a new insight into the transverse partonic structure of hadrons at small x, where x is the momentum fraction of the hadron taken by a parton participating in the hard collision. Furthermore, such a final state, being a combination of colorful and colorless particles, gives the opportunity for particularly interesting investigations complementary to results obtained in studies of pure jet final states [2][3][4][5][6] and Drell-Yan pairs [7]. In particular the final state rescatterings due to soft color exchanges should have less impact on the properties of produced final state as compared to pure jet final states.…”
Section: Motivationmentioning
confidence: 95%