Wang S M, Nazarewicz W
FRIB Laboratory, Michigan State University, East Lansing, Michigan 48824, USA.
School of Physics, and State Key Laboratory of Nuclear Physics and Technology, Peking University, Beijing 100871, China.
Phys Rev Lett. 2021 Apr 9;126(14):142501. doi: 10.1103/PhysRevLett.126.142501.
Three-body decay is a rare decay mode observed in a handful of unbound rare isotopes. The angular and energy correlations between emitted nucleons are of particular interest, as they provide invaluable information on the interplay between structure and reaction aspects of the nuclear open quantum system. To study the mechanism of two-nucleon emission, we developed a time-dependent approach that allows us to probe emitted nucleons at long times and large distances. We successfully benchmarked the new method against the Green's function approach and applied it to low-energy two-proton and two-neutron decays. In particular, we studied the interplay between initial-state nucleon-nucleon correlations and final-state interaction. We demonstrated that the time evolution of the two-nucleon wave function is strongly impacted by the diproton/dineutron dynamics and that the correlations between emitted nucleons provide invaluable information on the dinucleon structure in the initial state.
三体衰变是在少数未束缚的稀有同位素中观察到的一种罕见衰变模式。发射出的核子之间的角关联和能量关联尤为令人关注,因为它们提供了关于核开放量子系统的结构与反应方面相互作用的宝贵信息。为了研究双核子发射机制,我们开发了一种含时方法,该方法使我们能够在长时间和大距离下探测发射出的核子。我们成功地将新方法与格林函数方法进行了基准测试,并将其应用于低能双质子和双中子衰变。特别是,我们研究了初态核子 - 核子关联与末态相互作用之间的相互影响。我们证明了双核子波函数的时间演化受到双质子/双中子动力学的强烈影响,并且发射出的核子之间的关联提供了关于初态双核子结构的宝贵信息。