المساق
arXiv 2017-12-26 DOI 10.1103/PhysRevLett.120.022501 1 مشاهدة

Exploring Zeptosecond Quantum Equilibration Dynamics: From Deep-Inelastic to Fusion-Fission Outcomes in ⁵⁸Ni+⁶⁰Ni Reactions

Williams, E. · Sekizawa, K. · Hinde, D. J. · Simenel, C. · Dasgupta, M. · Carter, I. P. · Cook, K. J. · Jeung, D. Y. · McNeil, S. D. · Palshetkar, C. S. · Rafferty, D. C. · Ramachandran, K. · Wakhle, A.

الأصل · EN

Energy dissipative processes play a key role in how quantum many-body systems dynamically evolve towards equilibrium. In closed quantum systems, such processes are attributed to the transfer of energy from collective motion to single-particle degrees of freedom; however, the quantum many-body dynamics of this evolutionary process are poorly understood. To explore energy dissipative phenomena and equilibration dynamics in one such system, an experimental investigation of deep-inelastic and fusion-fission outcomes in the ⁵⁸Ni+⁶⁰Ni reaction has been carried out. Experimental outcomes have been compared to theoretical predictions using Time Dependent Hartree Fock and Time Dependent Random Phase Approximation approaches, which respectively incorporate one-body energy dissipation and fluctuations. Excellent quantitative agreement has been found between experiment and calculations, indicating that microscopic models incorporating one-body dissipation and fluctuations provide a potential tool for exploring dissipation in low-energy heavy ion collisions.

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