In this paper we have investigated in detail the relativistic three-body bound states. We carried out calculations in six-dimensional representation on the basis of the Jacobi coordinates. The obtained second-degree differential equation is solved by using the Nikiforov-Uvarov method and the energy eigenvalues are obtained. Consequently we obtained the binding energy of the three-nucleon bound system. Here we used the generalized Woods-Saxon spin-independent potential in our calculations. The dependence of the three-body binding energy on the potential parameters is also investigated
A simple way of deducing the two-body potential from a given two- or three-body wave function is sug...
The four-body Yakubovsky equations in a three-dimensional approach with the inclusion of the three-b...
A recently developed three-dimensional approach (without partial-wave decomposition) is considered t...
Studying of the relativistic three-body bound state in a three-dimensional (3D) approach is a necess...
© 2020, The Author(s). In this paper, we study the relativistic effects in a three-body bound state....
The bound state of three nucleons is investigated using the Faddeev equations within the Bethe-Salpe...
The bound state of three nucleons is investigated using the Faddeev equations within the Bethe-Salpe...
The nuclear 3-body problem in which two particles are identical is investigated, by assuming separab...
The bound state of three nucleons is investigated using the Faddeev equations within the Bethe-Salpe...
We study the binding energy of the three-nucleon system in relativistic models that use two differen...
We study the binding energy of the three-nucleon system in relativistic models t...
We study the binding energy of the three-nucleon system in relativistic models t...
The relativistic properties of the three-nucleon system are investigated using the Faddeev equations...
The bound state energy of three quark systems is studied in the framework of a non- relativistic spi...
The Faddeev equation for the three-body bound state with two- and three-body forces is solved direct...
A simple way of deducing the two-body potential from a given two- or three-body wave function is sug...
The four-body Yakubovsky equations in a three-dimensional approach with the inclusion of the three-b...
A recently developed three-dimensional approach (without partial-wave decomposition) is considered t...
Studying of the relativistic three-body bound state in a three-dimensional (3D) approach is a necess...
© 2020, The Author(s). In this paper, we study the relativistic effects in a three-body bound state....
The bound state of three nucleons is investigated using the Faddeev equations within the Bethe-Salpe...
The bound state of three nucleons is investigated using the Faddeev equations within the Bethe-Salpe...
The nuclear 3-body problem in which two particles are identical is investigated, by assuming separab...
The bound state of three nucleons is investigated using the Faddeev equations within the Bethe-Salpe...
We study the binding energy of the three-nucleon system in relativistic models that use two differen...
We study the binding energy of the three-nucleon system in relativistic models t...
We study the binding energy of the three-nucleon system in relativistic models t...
The relativistic properties of the three-nucleon system are investigated using the Faddeev equations...
The bound state energy of three quark systems is studied in the framework of a non- relativistic spi...
The Faddeev equation for the three-body bound state with two- and three-body forces is solved direct...
A simple way of deducing the two-body potential from a given two- or three-body wave function is sug...
The four-body Yakubovsky equations in a three-dimensional approach with the inclusion of the three-b...
A recently developed three-dimensional approach (without partial-wave decomposition) is considered t...