Planetary Dynamics and Habitable Planet Formation in Binary Star Systems

  • Haghighipour N
  • Dvorak R
  • Pilat-Lohinger E
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Abstract

Whether binaries can harbor potentially habitable planets depends on several factors including the physical properties and the orbital characteristics of the binary system. While the former determines the location of the habitable zone (HZ), the latter affects the dynamics of the material from which terrestrial planets are formed (i.e., planetesimals and planetary embryos), and drives the final architecture of the planets assembly. In order for a habitable planet to form in a binary star system, these two factors have to work in harmony. That is, the orbital dynamics of the two stars and their interactions with the planet-forming material have to allow terrestrial planet formation in the habitable zone, and ensure that the orbit of a potentially habitable planet will be stable for long times. We have organized this chapter with the same order in mind. We begin by presenting a general discussion on the motion of planets in binary stars and their stability. We then discuss the stability of terrestrial planets, and the formation of potentially habitable planets in a binary-planetary system.

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Haghighipour, N., Dvorak, R., & Pilat-Lohinger, E. (2010). Planetary Dynamics and Habitable Planet Formation in Binary Star Systems (pp. 285–327). https://doi.org/10.1007/978-90-481-8687-7_11

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