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Theoretical study of nucleosynthesis of light nuclei in intermediate-energy central heavy-ion collisions

Physical Review C · Ocak 2026

Özet
We demonstrate a statistical method to describe the fragment formation in rapidly expanding nuclear matter. The production of light nuclei in central collisions of 132Sn+124Sn and 108Sn+112Sn at 270 MeV/nucleon has been studied in the framework of the statistical model with the hypothesis of local equilibrium. The model suggests that the nuclei are formed at subnuclear density from the dynamically produced baryons, which can be subdivided into the local highly excited clusters. The nucleation takes place inside these clusters during the matter expansion, when the clusters enter the phase coexistence region of the nuclear liquid-gas phase transition. This process is described within the microcanonical version of the statistical multifragmentation model (SMM) as a decay of hot clusters into final nuclei. We emphasize the importance of studying nucleosynthesis in this energy range because of the expected change of the fragmentation mechanisms, which was also observed in previous experiments. There is a qualitative agreement with the recent experimental data obtained in these reactions at the Radioactive Isotopic-Beam Factory (RIKEN).
1 atıf Ocak 2026 DOI
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YÖKSİS Kayıtları
Theoretical study of nucleosynthesis of light nuclei in intermediate-energy central heavy-ion collisions
PHYSICAL REVIEW C · 2026 SCI-Expanded
Prof. Dr. NİHAL BÜYÜKÇİZMECİ →
YÖKSİS Kayıtları — ISSN Eşleşmesi
Bu dergide (ISSN eşleşmesi) kurumun 14 kaydı bulundu.
Theoretical study of nucleosynthesis of light nuclei in intermediate-energy central heavy-ion collisions
2026 ISSN: 2469-9985 SCI-Expanded Q2
Prof. Dr. NİHAL BÜYÜKÇİZMECİ →
Formation of hypernuclei in evaporation and fission processes
2016 ISSN: 2469-9985 SCI
Prof. Dr. NİHAL BÜYÜKÇİZMECİ →
Erratum Mechanisms for the production of hypernuclei beyond the neutron and proton drip lines Phys Rev C 88 014611 2013
2016 ISSN: 2469-9985 SCI
Prof. Dr. NİHAL BÜYÜKÇİZMECİ →
Isospin-dependent multifragmentation of relativistic projectiles
2011 ISSN: 2469-9985 SCI
Prof. Dr. ÜLFET ATAV →
Statistical production and binding energy of hypernuclei
2018 ISSN: 2469-9985 SCI
Prof. Dr. NİHAL BÜYÜKÇİZMECİ →
Evolution of the statistical disintegration of finite nuclei toward high energy
2022 ISSN: 2469-9985 SCI-Expanded Q2
Prof. Dr. NİHAL BÜYÜKÇİZMECİ →
Isospin compositions of correlated sources in the Fermi energy domain
2023 ISSN: 2469-9985 SCI Q2
Prof. Dr. NİHAL BÜYÜKÇİZMECİ →
Nucleosynthesis of light nuclei and hypernuclei in central Au+Au collisions at (sNN)^[1/2]=3 GeV
2023 ISSN: 2469-9985 SCI Q2
Prof. Dr. NİHAL BÜYÜKÇİZMECİ →
Neutrons from projectile fragmentation at 600 MeV/nucleon
2023 ISSN: 2469-9985 SCI-Expanded Q2
Prof. Dr. NİHAL BÜYÜKÇİZMECİ →
Isospin compositions of correlated sources in the Fermi energy domain
2023 ISSN: 2469-9985 SCI-Expanded Q2
Dr. Öğr. Üyesi AYŞEGÜL ERGUN →
Isospin compositions of correlated sources in the Fermi energy domain
2023 ISSN: 2469-9985 SCI-Expanded Q2
Dr. Öğr. Üyesi AYŞEGÜL ERGUN →
Production of nuclei and hypernuclei in pion-induced reactions near threshold energies
2024 ISSN: 2469-9985 SCI Q2
Prof. Dr. NİHAL BÜYÜKÇİZMECİ →
Statistical nucleation in expanding nuclear matter
2025 ISSN: 2469-9985 SCI-Expanded Q2
Dr. Öğr. Üyesi AYŞEGÜL ERGUN →
Directed and elliptic flow of light nuclei and hypernuclei in Au+Au collisions at $\sqrt{s_\mathrm{NN}}=3$ GeV: Coalescence vs. Statistical Fragmentation
2025 ISSN: 2469-9985 SCI Q2
Prof. Dr. NİHAL BÜYÜKÇİZMECİ →

Makale Bilgileri

Toplam Atıf 1 atıf · Scopus
ISSN24699985
Yayın TarihiOcak 2026
Cilt / Sayfa113 · 1-9

Kurumlar

Goethe-Universität Frankfurt am Main
Frankfurt am Main Germany
GSI Helmholtz Centre for Heavy Ion Research GmbH
Darmstadt Germany
Helmholtz Research Academy Hesse for FAIR
Frankfurt am Main Germany
Selçuk Üniversitesi
Selçuklu Turkey

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Scimago Dergi (ISSN Eşleşmesi)
Physical Review C
Q1
SJR Skoru1,120
H-Index253
YayıncıAmerican Physical Society
ÜlkeUnited States
Nuclear and High Energy Physics (Q1)
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