Showing posts with label neutron star exoplanets. Show all posts
Showing posts with label neutron star exoplanets. Show all posts

Monday, July 3, 2017

Could Exoplanets Around Neutron Stars be Habitable?

Neutron Star Planets: Atmospheric processes and habitability

Authors:


Patruno et al

Abstract: 
Of the roughly 3000 neutron stars known, only a handful have sub-stellar companions. The most famous of these are the low-mass planets around the millisecond pulsar B1257+12. New evidence indicates that observational biases could still hide a wide variety of planetary systems around most neutron stars. We consider the environment and physical processes relevant to neutron star planets, in particular the effect of X-ray irradiation and the relativistic pulsar wind on the planetary atmosphere. We discuss the survival time of planet atmospheres and the planetary surface conditions around different classes of neutron stars, and define a neutron star habitable zone. Depending on as-yet poorly constrained aspects of the pulsar wind, both Super-Earths around B1257+12 could lie within its habitable zone.

Tuesday, April 5, 2016

The Evolution of Exoplanet Systems After Their Host Star Leaves to Main Sequence

Post-main-sequence planetary system evolution

Author:

Veras

Abstract:

The fates of planetary systems provide unassailable insights into their formation and represent rich cross-disciplinary dynamical laboratories. Mounting observations of post-main-sequence planetary systems necessitate a complementary level of theoretical scrutiny. Here, I review the diverse dynamical processes which affect planets, asteroids, comets and pebbles as their parent stars evolve into giant branch, white dwarf and neutron stars. This reference provides a foundation for the interpretation and modelling of currently known systems and upcoming discoveries.