We make use of supersymmetric quantum mechanics (SUSY QM) to find three sets of conditions under which the problem of a planar quantum pendulum becomes analytically solvable. The analytic forms of the pendulum's eigenfuntions make it possible to find analytic expressions for observables of interest, such as the expectation values of the angular momentum squared and of the orientation and alignment cosines as well as of the eigenenergy. Furthermore, we find that the topology of the intersections of the pendulum's eigenenergy surfaces can be characterized by a single integer index whose values correspond to the sets of conditions under which the analytic solutions to the quantum pendulum problem exist
This thesis gives an introduction to the basic formalism of one-dimensional supersymmetric quantum m...
A detailed quantum mechanical treatment of the motion of a plane pendulum is given. Exact solution o...
This project complements two review articles ( Supersymmetry and Quantum Mechanics, Phys. Reps. 25...
We make use of supersymmetric quantum mechanics (SUSY QM) to find three sets of conditions under whi...
We make use of supersymmetric quantum mechanics (SUSY QM) to find three sets of conditions under whi...
We undertook a mutually complementary analytic and computational study of the full-fledged spherical...
We made use of supersymmetric quantum mechanics (SUSY QM) to find conditions under which the Stark e...
We have subjected the planar pendulum eigenproblem to a symmetry analysis with the goal of explainin...
We have subjected the planar pendulum eigenproblem to a symmetry analysis with the goal of explainin...
We have subjected the planar pendulum eigenproblem to a symmetry analysis with the goal of explainin...
We undertook a mutually complementary analytic and computational study of the full-fledged spherical...
We have subjected the planar pendulum eigenproblem to a symmetry analysis with the goal of explainin...
In these lecture notes we shall study first the supersymmetric quantum mechanics (SUSY QM), speciall...
This invaluable book provides an elementary description of supersymmetric quantum mechanics which co...
Abstract. An elementary introduction is given to the subject of supersymmetry in quantum me-chanics ...
This thesis gives an introduction to the basic formalism of one-dimensional supersymmetric quantum m...
A detailed quantum mechanical treatment of the motion of a plane pendulum is given. Exact solution o...
This project complements two review articles ( Supersymmetry and Quantum Mechanics, Phys. Reps. 25...
We make use of supersymmetric quantum mechanics (SUSY QM) to find three sets of conditions under whi...
We make use of supersymmetric quantum mechanics (SUSY QM) to find three sets of conditions under whi...
We undertook a mutually complementary analytic and computational study of the full-fledged spherical...
We made use of supersymmetric quantum mechanics (SUSY QM) to find conditions under which the Stark e...
We have subjected the planar pendulum eigenproblem to a symmetry analysis with the goal of explainin...
We have subjected the planar pendulum eigenproblem to a symmetry analysis with the goal of explainin...
We have subjected the planar pendulum eigenproblem to a symmetry analysis with the goal of explainin...
We undertook a mutually complementary analytic and computational study of the full-fledged spherical...
We have subjected the planar pendulum eigenproblem to a symmetry analysis with the goal of explainin...
In these lecture notes we shall study first the supersymmetric quantum mechanics (SUSY QM), speciall...
This invaluable book provides an elementary description of supersymmetric quantum mechanics which co...
Abstract. An elementary introduction is given to the subject of supersymmetry in quantum me-chanics ...
This thesis gives an introduction to the basic formalism of one-dimensional supersymmetric quantum m...
A detailed quantum mechanical treatment of the motion of a plane pendulum is given. Exact solution o...
This project complements two review articles ( Supersymmetry and Quantum Mechanics, Phys. Reps. 25...