English

Novel heavy flavor suppression mechanisms in the QGP

High Energy Physics - Phenomenology 2008-11-26 v1

Abstract

We revisit the question of the measured, unexpectedly large, heavy flavor suppression, RAA(pT)1R_{AA}(p_T) \ll 1, in nucleus-nucleus collisions at RHIC and compare two new theoretical approaches to the DD- and BB-meson quenching. In the first model, radiative energy loss, collisional energy loss and heavy quark-resonance interactions are combined to evaluate the drag and diffusion coefficients in the quark-gluon plasma and the mixed phase. These are applied in a relativistic Fokker-Planck equation to simulate the heavy cc- and bb-quark suppression rate and elliptic flow v2(pT)v_2(p_T). In the second model, the fragmentation probability for heavy quarks and the medium-induced decay probability for heavy hadrons are derived. These are implemented in a set of coupled rate equations that describe the attenuation of the observable spectra from the collisional dissociation of heavy mesons in the QGP. An improved description of the non-photonic electron RAA(pT)R_{AA}(p_T) at RHIC can be obtained. In contrast to previous results, the latter approach predicts suppression of BB-mesons comparable to that of DD-mesons at transverse momenta as low as pT10p_T \sim 10 GeV.

Keywords

Cite

@article{arxiv.hep-ph/0701188,
  title  = {Novel heavy flavor suppression mechanisms in the QGP},
  author = {Ivan Vitev and Azfar Adil and Hendrik van Hees},
  journal= {arXiv preprint arXiv:hep-ph/0701188},
  year   = {2008}
}

Comments

4 pages, 4 figures. Quark Matter 2006 proceedings