6533b826fe1ef96bd1284618

RESEARCH PRODUCT

Angular distributions in quasi-fission reactions

K. SümmererG. WirthR. LucasW. BrüchleK. LützenkirchenJ. V. KratzC. GregoireJ. Poitou

subject

PhysicsNuclear and High Energy PhysicsAngular accelerationAngular momentumTotal angular momentum quantum numberAngular momentum couplingAngular momentum of lightRotational transitionOrbital angular momentum of lightAtomic physicsSpin-½

description

Abstract Angular distributions for fission-like fragments were measured in the systems 50Ti, 56Fe + 208Pb by applying an off-line K X-ray activation technique. The distributions d2σ/dθdZ exhibit forward-backward asymmetries that are strongly Z-dependent. They result from a process (quasi-fission) which yields nearly symmetric masses in times comparable to the rotational period of the composite system. A method for obtaining the variance of the tilting angular momentum, K02, from these skewed, differential angular distributions is described. The results indicate that the tilting mode is not fully excited in quasi-fission reactions. The results are compared to the sum of the variances of all statistical spin components, measured via γ-multiplicities. Integration of the angular distributions d2σ/dθdZ over all values of Z yields the integral angular distributions dσ/dθ and dσ/dΩ symmetric around 90°. The associated unusually large anisotropies do not at all provide an adequate basis for tests or modifications of the transition-state theory. A deconvolution of d2σ/dθdZ is performed with gaussian distributions depending on rotational angles Δθ extending over a range of up to 540°. From the mean values 〈Δθ〉 a time scale for the evolution of K0 is calculated.

https://doi.org/10.1016/0375-9474(86)90312-x