Data for "Investigating temporary capture in the Sun-Jupiter three-body system via Lagrangian coherent structures"
Description
The supplementary online materials for the paper "Investigating temporary capture in the Sun-Jupiter three-body system via Lagrangian coherent structures" consist of two parts.
Part 1: Coordinates of the LCS Surfaces in Figure 8
This part contains the coordinates of the local maxima of FTLE (Finite-Time Lyapunov Exponent) values that compose the Lagrangian Coherent Structures (LCS) surface presented in Figure 8 of the paper. These coordinates are crucial for understanding the formation and characteristics of the LCS in the three-body system.
Part 2: Orbital States of Asteroid 2002 GV28 Based on the High-Fidelity Ephemeris Model from Section 2.2 of the Paper
This part includes the orbital states of asteroid 2002 GV28, propagated using a high-fidelity ephemeris model as described in Section 2.2 of the paper. The data provides information on the asteroid's state in two different coordinate systems:
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Heliocentric J2000.0 Ecliptic Coordinate System:
- This dataset includes the position and velocity of the asteroid relative to the Sun at various time steps.
- The columns typically include: Time (Julian Date), X (km), Y (km), Z (km), Vx (km/s), Vy (km/s), Vz (km/s).
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Sun-Jupiter Rotating Coordinate System:
- This dataset provides the position and velocity of the asteroid relative to the Sun-Jupiter rotating frame.
- The columns typically include: Time (Julian Date), X (normlized), Y (normlized), Z (normlized), Vx (normlized), Vy (normlized), Vz (normlized).
Each entry in these datasets corresponds to specific time steps during the propagation, providing a comprehensive view of the asteroid's trajectory in both coordinate systems.
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(27.8 MB)
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md5:e921e4a17c0679d9eec010c9748ca542
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