The Role of Gluon Depletion in J/psi Suppression
arXiv:nucl-th/9702051 · doi:10.1103/PhysRevC.56.432
Abstract
The depletion of gluons as the parton flux traverses a nucleus in a heavy-ion collision can influence the production rate of heavy-quark states. Thus the suppression of can be due to gluon depletion in the initial state in addition to nuclear and hadronic absorption in the final state. A formalism is developed to describe the depletion effect. It is shown that, without constraints from other experimental facts beside the suppression data in and collisions, it is not possible to determine the relative importance of depletion vs absorption. Possible relevance to the enhanced suppression seen in the data is mentioned but not studied.
12 pages + 2 figures (in ps file), LaTex, Submitted to Phys. Rev. C
Cited by in corpus (9)
- Charmonium Suppression in Lead-Lead Collisions: Is There a Break in the Cross-Section?
- Theoretical Interpretations of J/Psi Suppression: A Summary
- The effect of gluon depletion on J/psi suppression in pA and AA collisions
- Dilepton emission from an equlibrating non-abelian plasma
- Enhanced J/psi suppression due to gluon depletion
- J/psi Production in an Equilibrating Partonic System
- Phenomenological Evidence for Gluon Depletion in pA Collisions
- normal and anomalous suppressions in a hadron and string cascade model
- An alternative way of plotting the data and results of models of J/psi suppression