We investigate the stability of motion close to the Lagrangian equilibrium points L4 and L5 in the framework of the spatial, elliptic, restricted three- body problem, subject to the radial component of Poynting-Robertson drag. For this reason we develop a simplified resonant model, that is based on averaging theory, i.e. averaged over the mean anomaly of the perturbing planet. We find temporary stability of particles displaying a tadpole motion in the 1:1 resonance. From the linear stability study of the averaged simplified resonant model, we find that the time of temporary stability is proportional to beta a1 n1 , where beta is the ratio of the solar radiation over the gravitational force, and a1, n1 are the semi-major axis and the mean mo...
We discovered a dramatically large difference in the the motion of a test particle in the vicinity o...
Abstract: We study the dynamics of planetary systems with two planets moving in the same plane, when...
In this paper, we examine the effects of radiation pressure, Poynting-Robertson (PR) drag, and solar...
We investigate the stability of motion close to the Lagrangian equilibrium points L4 and L5 in the f...
We investigate the stability of motion close to the Lagrangian equilibrium points L4 and L5 in the f...
We investigate the stability of motion close to the Lagrangian equilibrium points L4 and L5 in the ...
Using an analytical and numerical study, this paper investigates the equilibrium state of the triang...
This paper presents an investigation on the dynamical effect of Poynting–Robertson drag on the circu...
We analyze the combined effect of Poynting-Robertson and solar wind drag on space debris. We derive ...
We analyze the combined effect of Poynting-Robertson and solar wind drag on space debris. We derive ...
We analyze the combined effect of Poynting-Robertson and solar wind drag on space debris. We derive ...
We analyze the combined effect of Poynting-Robertson and solar wind drag on space debris. We derive ...
We analyze the process of resonance trapping due to Poynting-Robertson drag and Stokes drag in the f...
We study the dynamics of co-orbital dust in the inner Solar System, that is, the role of the solar r...
We study the dynamics of co-orbital dust in the inner Solar System, that is, the role of the solar r...
We discovered a dramatically large difference in the the motion of a test particle in the vicinity o...
Abstract: We study the dynamics of planetary systems with two planets moving in the same plane, when...
In this paper, we examine the effects of radiation pressure, Poynting-Robertson (PR) drag, and solar...
We investigate the stability of motion close to the Lagrangian equilibrium points L4 and L5 in the f...
We investigate the stability of motion close to the Lagrangian equilibrium points L4 and L5 in the f...
We investigate the stability of motion close to the Lagrangian equilibrium points L4 and L5 in the ...
Using an analytical and numerical study, this paper investigates the equilibrium state of the triang...
This paper presents an investigation on the dynamical effect of Poynting–Robertson drag on the circu...
We analyze the combined effect of Poynting-Robertson and solar wind drag on space debris. We derive ...
We analyze the combined effect of Poynting-Robertson and solar wind drag on space debris. We derive ...
We analyze the combined effect of Poynting-Robertson and solar wind drag on space debris. We derive ...
We analyze the combined effect of Poynting-Robertson and solar wind drag on space debris. We derive ...
We analyze the process of resonance trapping due to Poynting-Robertson drag and Stokes drag in the f...
We study the dynamics of co-orbital dust in the inner Solar System, that is, the role of the solar r...
We study the dynamics of co-orbital dust in the inner Solar System, that is, the role of the solar r...
We discovered a dramatically large difference in the the motion of a test particle in the vicinity o...
Abstract: We study the dynamics of planetary systems with two planets moving in the same plane, when...
In this paper, we examine the effects of radiation pressure, Poynting-Robertson (PR) drag, and solar...