Javascript must be enabled to continue!
Studying habitability of the exoplanents Kepler-504 b, Kepler-315 b, and Kepler-315 c
View through CrossRef
Astronomers have always wanted to know whether there are other planets around other stars that support life like our Earth. The search for life elsewhere has led us to new findings of extreme planetary conditions that humans were unaware of. Here we present the habitability index values of three earlier discovered exoplanets: Kepler-504 b (of the star Kepler-504), Kepler-315 b and Kepler-315 c (of the Kepler-315 stellar system). We wanted to know what are the ideal factors that decide the chances of habitability, e.g., the orbital distance from the star, the type of star, or a combination of multiple properties. We hypothesized that there should exist a combination of these properties that will increase the chances that the exoplanet would be similar to Earth. We have adopted the Earth Similarity Index (ESI) for calculating the physical similarity of exoplanets to Earth, and hence the probability of them being habitable. Using available telescope data, we found that Kepler-504 b, with a host M-type star (small red dwarf), and Kepler-315 c, with a host G-type star, had ESI values of 71.23% and 69.44%, respectively, thereby showing high similarity to Earth. Kepler-315 b, with a host G-type star, on the other hand, had an ESI value of only 35.68%, showing poor similarity to Earth. We have also listed previously calculated ESI values of additional exoplanets from the Planet Habitability Laboratory catalog, which supports our hypothesis. Thus, it suggests that a combination of star-type and orbital radius seems to make conditions favorable. Future work can study more exoplanets with such combinations to further validate these findings.
The Journal of Emerging Investigators, Inc.
Title: Studying habitability of the exoplanents Kepler-504 b, Kepler-315 b, and Kepler-315 c
Description:
Astronomers have always wanted to know whether there are other planets around other stars that support life like our Earth.
The search for life elsewhere has led us to new findings of extreme planetary conditions that humans were unaware of.
Here we present the habitability index values of three earlier discovered exoplanets: Kepler-504 b (of the star Kepler-504), Kepler-315 b and Kepler-315 c (of the Kepler-315 stellar system).
We wanted to know what are the ideal factors that decide the chances of habitability, e.
g.
, the orbital distance from the star, the type of star, or a combination of multiple properties.
We hypothesized that there should exist a combination of these properties that will increase the chances that the exoplanet would be similar to Earth.
We have adopted the Earth Similarity Index (ESI) for calculating the physical similarity of exoplanets to Earth, and hence the probability of them being habitable.
Using available telescope data, we found that Kepler-504 b, with a host M-type star (small red dwarf), and Kepler-315 c, with a host G-type star, had ESI values of 71.
23% and 69.
44%, respectively, thereby showing high similarity to Earth.
Kepler-315 b, with a host G-type star, on the other hand, had an ESI value of only 35.
68%, showing poor similarity to Earth.
We have also listed previously calculated ESI values of additional exoplanets from the Planet Habitability Laboratory catalog, which supports our hypothesis.
Thus, it suggests that a combination of star-type and orbital radius seems to make conditions favorable.
Future work can study more exoplanets with such combinations to further validate these findings.
Related Results
SEPHI of Exoplanets Kepler-504 b, Kepler-315 b and Kepler-315 c
SEPHI of Exoplanets Kepler-504 b, Kepler-315 b and Kepler-315 c
The search for habitable exoplanets has improved with every passing year. New methods and advanced instrumentation with higher precision help find more habitable exoplanets and ref...
Potential climate and habitability of Gl 514 b
Potential climate and habitability of Gl 514 b
Introduction:  The recently discovered super-Earth planet Gl 514 b, orbiting the nearby (7.6 pc, [1]) M-dwarf, is an interesting case to explore the habi...
Is Europa Active and Suitable for Life? - How Europa Clipper and its Habitability Assessment Board (HAB) are working to synthesize observations to characterize Europa and its potential activity.
Is Europa Active and Suitable for Life? - How Europa Clipper and its Habitability Assessment Board (HAB) are working to synthesize observations to characterize Europa and its potential activity.
<p><strong>Introduction:</strong> The habitability of Europa is a property within a system, with many interdependent physical and chemical...
Kepler´s Ellipse Observed from Newton´s Evolute (1687), Horrebow´s Circle (1717), Hamilton´s Pedal Curve (1847), and Two Contrapedal Curves (28.10.2018)
Kepler´s Ellipse Observed from Newton´s Evolute (1687), Horrebow´s Circle (1717), Hamilton´s Pedal Curve (1847), and Two Contrapedal Curves (28.10.2018)
Johannes Kepler discovered the very elegant elliptical path of planets with the Sun in one focus of that ellipse in 1605. Kepler inspired generations of researchers to study proper...
Earth’s early tectonic modes and implications for habitability
Earth’s early tectonic modes and implications for habitability
Tectonic mode manifests how a planet’s interior is cooling, and it encompasses all the geological activities (e.g., magmatism, deformation, metamorphism, sedimentation) t...
Orbital Habitability: Architectural Design for Extra-Terrestrial Habitation
Orbital Habitability: Architectural Design for Extra-Terrestrial Habitation
<p>Companies like SpaceX and Virgin Galactic are privatising the space industry. This privatisation will allow more and more people to inhabit space for more extended periods...
Using supervised machine learning methods to improve the selection of analogue sites for studying habitability of the sub-surface ocean of Europa
Using supervised machine learning methods to improve the selection of analogue sites for studying habitability of the sub-surface ocean of Europa
IntroductionOwing to the limited amount of data from other planetary bodies in our Solar System, terrestrial analogues are frequently used to further the understanding of extraterr...
Assessing the habitability of observed Super Earths
Assessing the habitability of observed Super Earths
AbstractOne of the most interesting aims for the study of exoplanets to understand under which conditions life could appear and survive in other environments. To be able to bear an...

