Impact of Baryon anti-Baryon annihilation on hyperon (Λ, Λ) production and apparent strangeness enhancement in Λ/p in heavy ion collisions at SPS energy
Ekata Nandy, Subhasis Chattopadhyay
Abstract
A deconfined medium of quarks and gluon, called the Quark-Gluon Plasma (QGP) is produced when heavy-nuclei are collided at relativistic energies. The QGP formation is often characterized by a phenomenon called strangeness enhancement where, the relative production of strange-to-non-strange particles are enhanced in central collisions compared to peripheral or proton-proton interactions. Besides the enhancement in K/π ratios, a non-monotonic energy dependence was also reported for Λ to p ratios at CERN SPS, attributed to a signature for the strangeness enhancement as well. As anti-particles are produced directly from the reaction, the Λ/p ratios are considered as a cleaner probe for the strangeness enhancement. However, at this energy range hadronic interactions have a dominant role to play and, importantly for Λ and p, processes like baryon-anti-baryon (BB) annihilation can have a significant impact. In this work, we use a hadronic transport model UrQMD, to investigate the role of baryon-anti-baryon (BB) annihilation on Λ, Λ hyperon production and its effect on Λ/p ratios. The UrQMD calculations that include BB annihilation can produce the trend of average transverse mass spectra for Λ and Λ, as well as, the characteristic enhancement in Λ/p ratios in data as a function of centrality and collision energy. Furthermore, Λ/p ratios extracted from the feed-down corrected SPS data are seen to be in good agreement with UrQMD model calculations with BB annihilation. This suggests that Λ/p enhancement is not necessarily because of strangeness enhancement and BB annihilation has a significant role to play.
Create a lesson
Related papers
Scale Invariance and Compact Star Matter
Hyun Kyu Lee, Won-Gi Paeng
Optimizing artificial neural networks for dipole strength predictions in light nuclei
Tim Egert, Weiguang Jiang, Sonia Bacca
Coupled-channel scattering from artificial confinement
Tafat Weiss Attia, Itay Horin, Betzalel Bazak
From twelve to three active qubits: Ancilla-recycled rodeo filtering for trapped neutron-proton scattering
Myeong-Hwan Mun, Jubin Park, Myung-Ki Cheoun et al.
Single-particle potentials in asymmetric nuclear matter within the LOCV framework
Zahra Ziarati, Hamidreza Moshfegh
Frontier Questions and Emerging Directions in Nuclear Science and Technology
Yu-Gang Ma