By expanding the wave function in terms of the translationally invariant basis of harmonic oscillator functions, we calculate the converging upper (variational) bound for the energy. It is shown that one can construct lower bounds using the reduced density matrix that corresponds to the upper bound. These lower bounds converge to an exact value with the expansion of the basis. We perform the calculations of both bounds with realistic nucleon-nucleon potential for ground states of the triton and the alpha-particleFizikos institutas, romaska@ktl.mii.ltFizinių ir technologijos mokslų centro Fizikos institutasVytauto Didžiojo universitetasŠiaulių universiteta
Extensive variational computations are reported for the ground state energy of the non-relativi...
Extensive variational computations are reported for the ground state energy of the non-relativi...
Extensive variational computations are reported for the ground state energy of the non-relativistic ...
By expanding the wave function in terms of the translationally invariant basis of harmonic oscillato...
A method for lower bounds calculation for the lighest atomic nuclei is introduced. The effiency of t...
The new harmonic oscillator (HO) expansion method [1] is applied to calculate non-relativistic groun...
International audienceA ubiquitous problem in quantum physics is to understand the ground-state prop...
International audienceA ubiquitous problem in quantum physics is to understand the ground-state prop...
International audienceA ubiquitous problem in quantum physics is to understand the ground-state prop...
The nonrelativistic ionization energy levels of a helium atom are calculated for S, P, and D states....
International audienceA ubiquitous problem in quantum physics is to understand the ground-state prop...
Simple analytical wave functions satisfying appropriate boundary conditions are constructed for the ...
One of the fundamental goals of nuclear theory is explanation of properties of atomic nuclei in term...
Alternative lower bounds for the binding energy of a quantum-mechanical system of interacting partic...
Alternative lower bounds for the binding energy of a quantum-mechanical system of interacting partic...
Extensive variational computations are reported for the ground state energy of the non-relativi...
Extensive variational computations are reported for the ground state energy of the non-relativi...
Extensive variational computations are reported for the ground state energy of the non-relativistic ...
By expanding the wave function in terms of the translationally invariant basis of harmonic oscillato...
A method for lower bounds calculation for the lighest atomic nuclei is introduced. The effiency of t...
The new harmonic oscillator (HO) expansion method [1] is applied to calculate non-relativistic groun...
International audienceA ubiquitous problem in quantum physics is to understand the ground-state prop...
International audienceA ubiquitous problem in quantum physics is to understand the ground-state prop...
International audienceA ubiquitous problem in quantum physics is to understand the ground-state prop...
The nonrelativistic ionization energy levels of a helium atom are calculated for S, P, and D states....
International audienceA ubiquitous problem in quantum physics is to understand the ground-state prop...
Simple analytical wave functions satisfying appropriate boundary conditions are constructed for the ...
One of the fundamental goals of nuclear theory is explanation of properties of atomic nuclei in term...
Alternative lower bounds for the binding energy of a quantum-mechanical system of interacting partic...
Alternative lower bounds for the binding energy of a quantum-mechanical system of interacting partic...
Extensive variational computations are reported for the ground state energy of the non-relativi...
Extensive variational computations are reported for the ground state energy of the non-relativi...
Extensive variational computations are reported for the ground state energy of the non-relativistic ...