CMSHInBeauty · Measuring the open to closed beauty ratio in heavy-ion collisions at LHC
Horizon 2020 — Marie Skłodowska-Curie Actions
- Duration
- 2015-07-01 → 2017-06-30
- EU contribution
- €173,076
- Participants
- 1
- Scheme
- MSCA-IF-EF-ST
Lines connect the coordinator with its partners.
Results in brief
Measuring the open to closed beauty ratio in heavy-ion collisions at LHC
The goal of this project is to extend the knowledge of J/psi production in the heavy-ion collision. In contrast to ordinary matters in the Universe, a different state is predicted to occur when sufficiently high temperature and density are reached. In this new regime, quarks and gluons are not confined, they form the Quark Gluon Plasma (QGP). Similar extreme conditions can be reproduced by colliding heavy ions at high center-of-mass energy at the Large Hadron Collider (LHC). In the QGP, the production of quarkonia could be suppressed to that of proton-proton collisions due to color charge screening which leads to dissociation of quarkonium state. On the other hand, quarkonia production can be enhanced because of a large number of charm and beauty quarks in the medium. For quantitative measurement of the final production, modifications to the quarkonia production have been estimated with the nuclear modification factor, RAA. The RAA is a ratio of the particle productions in heavy-ion collisions to that in proton-proton collisions normalized by binary collisions. When the RAA is less or larger than 1, the particle production in heavy-ion collisions is suppressed or enhanced than proton-proton collisions, respectively. A complement to the RAA measurement is the elliptic anisotropy coefficient v2. This is the second Fourier coefficient in the expansion of the azimuthal angle distribution of the J/psi mesons, the azimuthal angle of the participant plane calculated for each event. The participant plane is defined by the beam direction and the direction of the shorter axis of the overlap region of the two colliding nuclei. Together with RAA, v2 can provide more detailed information on the J/psi meson production in heavy-ion collisions and the properties in the QGP. The main challenge in this project was enhancing precision for the J/psi RAA as well as v2. J/psi has two categories depending on its origin. Prompt J/psi is in a family of quarkonium states which is created at the initial stage of heavy-ion collisions, while nonprompt J/psi is not quarkonium but an open beauty flavored meson. Complicate mathematical models were developed and tested to distinguish prompt and nonprompt J/psi with the highest precision. The new concept of mathematical models is correcting each event with corresponding measurement error. With this technique, the fraction of nonprompt J/psi out of total J/psis mesons was measured within a few percentages of systematical uncertainties. This project measured the RAA and v2 of J/psi in PbPb collisions at 2.76 and the RAA at 5.02 TeV, recorded by CMS detector. The measurements cover J/psi rapidity less than 2.4 and transverse momentum from 3 to 30-50 GeV/c depending on the collision energy, which has not been measured by other experiments.
Data: CORDIS, © European Union
Project objective
The goal of this proposal is to understand the behaviour of bottomonia, i.e., bound states of bottom quark pairs,in heavy-ion collisions. The dissociation of these states is directly linked to the temperature of the quark-gluon plasma (QGP) formed in these collisions. However, additional effects not related to the QGP formation, referred to as cold nuclear matter effects, are also thought to play a role, complicating the interpretation of present data.A new quantity is proposed to disentangle these effects and isolate the dissociation effect of the QGP: the ratio of the nuclear modification factors (a normalized comparison of heavy-ion and proton-proton collisions) of bottomonia and open beauty. This quantity is particularly powerful if measured over the entire cross section, down to low transverse momentum.The open beauty measurement, carried out via non-prompt J/psi identification, is challenging at low transverse momentum and the project will start by a technical development aiming at reaching transverse momentum = 0 GeV/c in the heavy-ion environment. The measurements of bottomonia and open beauty will then be carried out with the high luminosity data at increased centre-of-mass energy that will be provided by LHC at the end of 2015.The final piece of the bottomonia puzzle is the measurement of the Xb excited states, which have never been measured in heavy-ion collisions, but which give a significant feed-down contribution to the Y(1S) ground state. A feasibility study of this difficult measurement will conclude this proposal.
Original text from CORDIS.
Participants
- CENTRE NATIONAL DE LA RECHERCHE SCIENTIFIQUE CNRS · ParisCoordinatorFrance
Links
Data: CORDIS, © European Union
