Heavy Flavor Physics at the sPHENIX Experiment
Affiliation:
1. Los Alamos National Laboratory, Los Alamos, NM 87545, USA
Abstract
The sPHENIX experiment is a state-of-the-art jet and heavy flavor physics detector, which successfully recorded its first Au + Au collision data at 200 GeV at the Relativistic Heavy Ion Collider (RHIC). sPHENIX will provide heavy flavor physics measurements at RHIC, covering an unexplored kinematic region and unprecedented precision, to probe the parton energy loss mechanism, parton transport coefficients in quark–gluon plasma, and the hadronization process under various medium conditions. At the center of sPHENIX, the monolithic active pixel sensor (MAPS)-based VerTeX detector (MVTX) is a high-precision silicon pixel detector. The MVTX provides excellent position resolution and the capability of operating in continuous streaming readout mode, allowing precise vertex determination and recording a large data sample, both of which are particularly crucial for heavy flavor physics measurements. In this work, we will show the general performance of heavy-flavor hadron reconstruction. In addition, we will discuss the commissioning experience with sPHENIX. Finally, we will provide the projection of b-hadron and jet observables and discuss the estimated constraints on theoretical models.
Funder
Los Alamos National Laboratory Knowledge Unlatched
Reference21 articles.
1. Adare, A. et al. [PHENIX Collaboration] (2015). An Upgrade Proposal from the PHENIX Collaboration. arXiv. 2. Aprahamian, A., Robert, A., Caines, H., Cates, G., Cizewski, J.A., Cirigliano, V., Dean, D.J., Deshpande, A., Ent, R., and Fahey, F. (2015). Reaching for the Horizon: The 2015 Long Range Plan for Nuclear Science. 3. Aidala, C., Aprahamian, A., Bedaque, P., Bernstein, L., Carlson, J., Carpenter, M., Chipps, K., Cirigliano, V., Cloet, I., and de Gouvea, A. (2020, January 01). A New Era of Discovery: The 2023 Long Range Plan for Nuclear Science, Available online: https://nuclearsciencefuture.org/wp-content/uploads/2023/11/NSAC-LRP-2023-v1.3.pdf. 4. Implementation of ACTS into sPHENIX Track Reconstruction;Osborn;Comput. Softw. Big Sci.,2021 5. Design and Beam Test Results for the 2-D Projective sPHENIX Electromagnetic Calorimeter Prototype;Aidala;IEEE Trans. Nucl. Sci.,2021
|
|