The recent findings of exoplanets have renewed interest in exploration missions of extra-solar star systems. In this context the binary star system of Alpha Centauri A/B plays a scientifically important role. The current paper aims at investigating the capture and the transfer trajectories from A to B performed by a stellar-photon sailcraft, which gives the best performance in long duration missions. The mission has been divided into four phases and minimum transfer time trajectories have been obtained by using a direct optimisation approach. Finally, a preliminary analysis in terms of Zero Velocity Curves has been carried out
This paper investigates time-optimal solar sail trajectories between Libration Point Orbits (LPOs) o...
This paper presents time-optimal transfer trajectories between planar solar-sail displaced libration...
This paper investigates time-optimal solar sail trajectories between displaced Libration Point Orbit...
With the increased interest for interstellar exploration after the discovery of exoplanets and the p...
Our closest neighboring star system, Alpha Centauri, is located at “mere” 275,000 astronomical units...
This paper aims to assess the feasibility of an interstellar mission to reach the Alpha Centauri sta...
New means of interstellar travel are now being considered by various research teams, assuming lightw...
The development of solar-sail technology in combination with the rising interest in a mission to the...
Different concepts for eliminating the threat of collision with a near-Earth object have been sugges...
AbstractThe high performance solar sail can enable fast missions to the outer solar system and produ...
Solar sails enable missions to the outer solar system and beyond, although the solar radiation press...
When sunlight illuminates a body, a tiny pressure is exerted upon its surface due to the photons imp...
This paper investigates time-optimal solar sail trajectories between Libration Point Orbits (LPOs) o...
Solar sail technology holds the promise of enhancing the interplanetary transportation infrastructur...
The goal of this work was to optimize the trajectory of a solar sailcraft in an Earth-Mars transfer....
This paper investigates time-optimal solar sail trajectories between Libration Point Orbits (LPOs) o...
This paper presents time-optimal transfer trajectories between planar solar-sail displaced libration...
This paper investigates time-optimal solar sail trajectories between displaced Libration Point Orbit...
With the increased interest for interstellar exploration after the discovery of exoplanets and the p...
Our closest neighboring star system, Alpha Centauri, is located at “mere” 275,000 astronomical units...
This paper aims to assess the feasibility of an interstellar mission to reach the Alpha Centauri sta...
New means of interstellar travel are now being considered by various research teams, assuming lightw...
The development of solar-sail technology in combination with the rising interest in a mission to the...
Different concepts for eliminating the threat of collision with a near-Earth object have been sugges...
AbstractThe high performance solar sail can enable fast missions to the outer solar system and produ...
Solar sails enable missions to the outer solar system and beyond, although the solar radiation press...
When sunlight illuminates a body, a tiny pressure is exerted upon its surface due to the photons imp...
This paper investigates time-optimal solar sail trajectories between Libration Point Orbits (LPOs) o...
Solar sail technology holds the promise of enhancing the interplanetary transportation infrastructur...
The goal of this work was to optimize the trajectory of a solar sailcraft in an Earth-Mars transfer....
This paper investigates time-optimal solar sail trajectories between Libration Point Orbits (LPOs) o...
This paper presents time-optimal transfer trajectories between planar solar-sail displaced libration...
This paper investigates time-optimal solar sail trajectories between displaced Libration Point Orbit...