Form Factors of Dimesoatoms for Discrete-Continuum Transitions
S. Bakmaev, O. Voskresenskaya
Abstract
An approach for calculation of transition form factors of hydrogen-like elementary atoms (EA) is proposed. A general formula for bound-continuous transition form factors of EA is derived. It is shown that these form factors can be represented in the form of finite sum of terms with simple analytical structure and may be numerically evaluated with arbitrary degree of accuracy. As an application of the presented form factors, the calculation of the spectra of products from EA ionization is considered.
Create a lesson
Related papers
What Are We Talking About When We Talk About Nuclear Reactions
Gregory Potel
Symmetry-Reduced Variational Quantum Simulation of the U(5)→ SU(3) Quantum Phase Transition in the Interacting Boson Model
Faisal Etminan
Probing Dense Nuclear Matter at Small-x: A workflow for a global analysis framework
Junaid S. Khan, Rebecca L. Lustberg, Fredrick Olness et al.
Electromagnetic responses induced by one- and two-body nuclear currents in inclusive electron-nucleus scattering
Kajetan Niewczas, Ashish Kumar Jha, Raúl González-Jiménez et al.
Effects of isospin imbalance on the chiral phase transition within a Chiral Dual Partner Model
R. M. Aguirre
Production of the ϕ and Ω via recombination of jet parton showers in relativistic heavy ion collisions
Kyong Chol Han, Sungtae Cho, Su Houng Lee