In this paper, we have investigated a region of direct stable orbits around the Moon, whose stability is related to the H2 Family of periodic orbits and to the quasi-periodic orbits that oscillate around them. The stability criteria adopted was that the path did not escape from the Moon during an integration period of 1000 days (remaining with negative two-body Moon-probe orbital energy during this period). Considering the three-dimensional four-body Sun-Earth-Moon-probe problem, we investigated the evolution of the size of the stability region, taking into account the eccentricity of the Earth's orbit, the eccentricity and inclination of the Moon's orbit, and the solar radiation pressure on the probe. We also investigated the evolution of ...
The term Weak Stability Boundary (WSB) is related to a region of stable motion around the second pri...
The planar, circular, restricted three-body problem predicts the existence of periodic orbits around...
In this paper we present an analytical theory with numerical simulations to study the orbital motion...
In the present work we explore regions of distant direct stable orbits around the Moon. First, the l...
In the present work we explore regions of distant direct stable orbits around the Moon. First, the l...
The present work deals with a family of simply periodic orbits around the Moon in the rotating Earth...
This work deals with the structure of the lunar Weak Stability Boundaries (WSB) in the framework of ...
The lunar sphere of influence, whose radius is some 66,300 km, has regions of stable orbits around t...
Abstract. We investigate the arrangements of periodic orbits in a restricted, circular, 3-dimensiona...
The term Weak Stability Boundary (WSB) is related to a region of stable motion around the second pri...
The term Weak Stability Boundary (WSB) is related to a region of stable motion around the second pri...
The term Weak Stability Boundary (WSB) is related to a region of stable motion around the second pri...
Low-altitude, near-polar orbits are very desirable as science orbits for missions to planetary satel...
Low-altitude, near-polar orbits are very desirable as science orbits for missions to planetary satel...
A renewed interest in the Moon over the last decade has created a need for robust mission design alg...
The term Weak Stability Boundary (WSB) is related to a region of stable motion around the second pri...
The planar, circular, restricted three-body problem predicts the existence of periodic orbits around...
In this paper we present an analytical theory with numerical simulations to study the orbital motion...
In the present work we explore regions of distant direct stable orbits around the Moon. First, the l...
In the present work we explore regions of distant direct stable orbits around the Moon. First, the l...
The present work deals with a family of simply periodic orbits around the Moon in the rotating Earth...
This work deals with the structure of the lunar Weak Stability Boundaries (WSB) in the framework of ...
The lunar sphere of influence, whose radius is some 66,300 km, has regions of stable orbits around t...
Abstract. We investigate the arrangements of periodic orbits in a restricted, circular, 3-dimensiona...
The term Weak Stability Boundary (WSB) is related to a region of stable motion around the second pri...
The term Weak Stability Boundary (WSB) is related to a region of stable motion around the second pri...
The term Weak Stability Boundary (WSB) is related to a region of stable motion around the second pri...
Low-altitude, near-polar orbits are very desirable as science orbits for missions to planetary satel...
Low-altitude, near-polar orbits are very desirable as science orbits for missions to planetary satel...
A renewed interest in the Moon over the last decade has created a need for robust mission design alg...
The term Weak Stability Boundary (WSB) is related to a region of stable motion around the second pri...
The planar, circular, restricted three-body problem predicts the existence of periodic orbits around...
In this paper we present an analytical theory with numerical simulations to study the orbital motion...