The Quantum Stationary HJ Equation (QSHJE) that we derived from the equivalence principle, gives rise to initial conditions which cannot be seen in the Schr\uf6dinger equation. Existence of the classical limit leads to a dependence of the integration constant l=l1+il2 on the Planck length. Solutions of the QSHJE provide a trajectory representation of quantum mechanics which, unlike Bohm's theory, has a non-trivial action even for bound states and no wave guide is present. The quantum potential turns out to be an intrinsic potential energy of the particle which, similarly to the relativistic rest energy, is never vanishing
We postulate that physical states are equivalent under coordinate transformations. We then implement...
We show that if space is compact, then time cannot be defined by Jacobi's theorem in the quantum Ham...
We show that the quantum Hamilton-Jacobi equation can be written in the classical form with the spat...
The Quantum Stationary HJ Equation (QSHJE) that we derived from the equivalence principle, gives ris...
The Equivalence Principle (EP), stating that all physical systems are connected by a coordinate tran...
A basic aspect of the recently proposed approach to quantum mechanics is that no use of any axiomati...
The recently formulated Equivalence Principle (EP) implies that interactions have a purely quantum o...
The authors show that requiring diffeomorphic equivalence for one-dimensional stationary states impl...
We consider the two main theorems in the derivation of the Quantum Hamilton--Jacobi Equation from th...
We postulate that physical states are equivalent under coordinate transformations. We then implement...
A basic aspect of the recently proposed approach to quantum mechanics is that no use of any axiomati...
We suggest that quantum mechanics and gravity are intimately related. In particular, we investigate ...
We show that if space is compact, then trajectories cannot be defined in the framework of the quantu...
We show that the quantum Hamilton-Jacobi equation can be written in the classical form with the spat...
Recently the authors showed that the postulated diffeomorphic equivalence of states implies quantum ...
We postulate that physical states are equivalent under coordinate transformations. We then implement...
We show that if space is compact, then time cannot be defined by Jacobi's theorem in the quantum Ham...
We show that the quantum Hamilton-Jacobi equation can be written in the classical form with the spat...
The Quantum Stationary HJ Equation (QSHJE) that we derived from the equivalence principle, gives ris...
The Equivalence Principle (EP), stating that all physical systems are connected by a coordinate tran...
A basic aspect of the recently proposed approach to quantum mechanics is that no use of any axiomati...
The recently formulated Equivalence Principle (EP) implies that interactions have a purely quantum o...
The authors show that requiring diffeomorphic equivalence for one-dimensional stationary states impl...
We consider the two main theorems in the derivation of the Quantum Hamilton--Jacobi Equation from th...
We postulate that physical states are equivalent under coordinate transformations. We then implement...
A basic aspect of the recently proposed approach to quantum mechanics is that no use of any axiomati...
We suggest that quantum mechanics and gravity are intimately related. In particular, we investigate ...
We show that if space is compact, then trajectories cannot be defined in the framework of the quantu...
We show that the quantum Hamilton-Jacobi equation can be written in the classical form with the spat...
Recently the authors showed that the postulated diffeomorphic equivalence of states implies quantum ...
We postulate that physical states are equivalent under coordinate transformations. We then implement...
We show that if space is compact, then time cannot be defined by Jacobi's theorem in the quantum Ham...
We show that the quantum Hamilton-Jacobi equation can be written in the classical form with the spat...