Browsing by Author "Bonasera, Aldo"
Now showing items 1-11 of 11
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Zheng, Hua; Giuliani, Gianluca; Bonasera, Aldo (Physical Review C - Nuclear Physics, 2013)
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Zheng, Hua (2014-10-01)One of the goals of nuclear physics is to study the Equation of State (EOS) of nuclear matter. In order to create the nuclear matter at different densities, we collide different nuclei and detect the fragments after the ...
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Zheng, Hua; Bonasera, Aldo (Physics Letters, B, 2011)
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Barbarino, Matteo (2015-12-09)The investigation of fusion reactions in laser produced plasma has become of great interest since the development of ultra-short pulse lasers technique, which can enable the measurement of not well known fusion cross ...
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Kimura, Sachie; Bonasera, Aldo (Physical Review C - Nuclear Physics, 2013)
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May Jr., Larry (2015-08-11)The nuclear Equation of State and the density dependence of the asymmetry energy have been explored via heavy-ion collisions of 35 MeV/nucleon 70Zn,64Ni+64Zn and 64Zn+70Zn,64Ni. The experimental data were collected on the ...
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Zheng, Hua; Bonasera, Aldo (Physical Review C - Nuclear Physics, 2011)
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Zarrella, Andrew James (2018-10-09)Pionic fusion is the process by which two nuclei collide, undergo complete fusion, and then de-excite solely by the emission of a pion. Previously measured pionic fusion cross sections are inconsistent with known mechanisms ...
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Heilborn, Lauren Ann (2018-09-11)The nuclear Equation of State (nEoS) is important to a more fundamental understanding of nuclear matter, particularly in asymmetric systems such as neutron stars. Proton-proton (pp) correlation functions have been predicted ...
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Jedele, Andrea M (2020-11-02)The density dependence of the symmetry term of the nuclear Equation of State (nEoS) has been studied using reactions of 70Zn+70Zn, 64Zn+64Zn and 64Ni+64Ni at 35 MeV/nucleon. The experiment was performed using the NIMROD ...
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Cammarata, Paul Joseph (2015-01-12)Heavy-ion collisions have played an important role in probing the asymmetry term of the nuclear Equation of State (nEoS). As the bombarding energy increases from lower energies (~9 MeV/nucleon) to near the Fermi energy, ...