DOE OSTI · 1603674
Isoscaling and nuclear reaction dynamics
Abstract
Isoscaling parameters α and β have been explored as a function of breakup angle in binary excited projectile-like fragment decays produced in collisions of 70 Zn+ 70 Zn and 64 Zn+ 64 Zn at 35 MeV per nucleon. In this analysis, focus was placed on isoscaling the second heaviest fragment with 4 ≤ Z L ≤ 8 emitted from the excited projectile-like fragment in events that contained a heavy fragment with Z H ≥ 12. The breakup orientation θ prox was defined as the angle between the heavy and light fragments’ center-of-mass velocity and the fragment pairs’ relative velocity. Breakups between 0° < θ prox ≤ 80° have been shown to be dominated by dynamical contributions, while break-up angles of θ prox > 100° are predominantly statistical. Historically, isoscaling has often been understood and applied in a statistical context, assuming that the fragments are produced after statistical equilibrium is achieved. Finally, studying isoscaling parameters as a function of θ prox reveals the sensitivity of α and β to the mechanism of fragment production.
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Hannaman, Andrew, McIntosh, Alan, Jedele, Andrea, Abbott, Austin, Gauthier, Jerome, Hagel, Kris, Harvey, Bryan, Kohley, Zach, Lui, Yiu-Wing, McIntosh, Lauren, Rodriguez Manso, Alis, Sorensen, Maxwell, Tobin, Zachary, Wada, Roy, Youngs, Michael, Yennello, Sherry. 2020-03-09. Isoscaling and nuclear reaction dynamics. https://doi.org/10.1103/physrevc.101.034605
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