We study the classical dynamics of a particle in nonrelativistic Snyder–de Sitter space. We show that for spherically symmetric systems, parameterizing the solutions in terms of an auxiliary time variable, which is a function only of the physical time and of the energy and angular momentum of the particles, one can reduce the problem to the equivalent one in classical mechanics. We also discuss a relativistic extension of these results, and a generalization to the case in which the algebra is realized in flat space
The dynamics of spinning particles in curved space–time is discussed, emphasizing the hamiltonian fo...
Relativistic dynamics with energy and momentum restricted to an anti-de Sitter space is presented. C...
Restricted Access.A new method is proposed for constructing examples in relativistic classical parti...
We study the classical dynamics of a particle in nonrelativistic Snyder–de Sitter space. We show tha...
The Snyder-de Sitter (SdS) model is a generalization of the Snyder model to a spacetime background o...
The Snyder model is an example of noncommutative spacetime admitting a fundamental length scale and ...
The Snyder model is an example of noncommutative spacetime admitting a fundamental length scale an...
The Snyder spacetime represents the first proposal of noncommutative geometry. It still retains a si...
We show that the Lorentzian Snyder models, together with their Galilei and Carroll limiting cases, c...
We calculate the orbits of a particle in Schwarzschild spacetime, assuming that the dynamics is gove...
We study the representations of the three-dimensional Euclidean Snyder-de Sitter algebra. This algeb...
We study the representations of the three-dimensional Euclidean Snyder-de Sitter algebra. This algeb...
Starting from the standard one-time dynamics of n nonrelativistic particles, the n-time equations of...
In this paper, we present the results of our investigation relating particle dynamics and non-commut...
AbstractThe dynamics of spinning particles in curved space–time is discussed, emphasizing the hamilt...
The dynamics of spinning particles in curved space–time is discussed, emphasizing the hamiltonian fo...
Relativistic dynamics with energy and momentum restricted to an anti-de Sitter space is presented. C...
Restricted Access.A new method is proposed for constructing examples in relativistic classical parti...
We study the classical dynamics of a particle in nonrelativistic Snyder–de Sitter space. We show tha...
The Snyder-de Sitter (SdS) model is a generalization of the Snyder model to a spacetime background o...
The Snyder model is an example of noncommutative spacetime admitting a fundamental length scale and ...
The Snyder model is an example of noncommutative spacetime admitting a fundamental length scale an...
The Snyder spacetime represents the first proposal of noncommutative geometry. It still retains a si...
We show that the Lorentzian Snyder models, together with their Galilei and Carroll limiting cases, c...
We calculate the orbits of a particle in Schwarzschild spacetime, assuming that the dynamics is gove...
We study the representations of the three-dimensional Euclidean Snyder-de Sitter algebra. This algeb...
We study the representations of the three-dimensional Euclidean Snyder-de Sitter algebra. This algeb...
Starting from the standard one-time dynamics of n nonrelativistic particles, the n-time equations of...
In this paper, we present the results of our investigation relating particle dynamics and non-commut...
AbstractThe dynamics of spinning particles in curved space–time is discussed, emphasizing the hamilt...
The dynamics of spinning particles in curved space–time is discussed, emphasizing the hamiltonian fo...
Relativistic dynamics with energy and momentum restricted to an anti-de Sitter space is presented. C...
Restricted Access.A new method is proposed for constructing examples in relativistic classical parti...