Site icon Scientific Inquirer

Solar flares can have serious impacts on a planet’s habitability.

Photo by Pixabay on Pexels.com

In a new study researchers, led by Research Scientist Dimitra Atri of the Center for Space Science at NYU Abu Dhabi (NYUAD), identified which stars were most likely to host habitable exoplanets based on the calculated erosion rates of the planetary atmospheres.

In the paper titled Stellar flares versus luminosity: XUV-induced atmospheric escape and planetary habitability, published in the journal Monthly Notices of Royal Astronomical Society: Letters, Atri and graduate student Shane Carberry Mogan present the process of analyzing flare emission data from NASA’s TESS (Transiting Exoplanet Survey Satellite) observatory.

Study reveals how brain remodeling during adolescence shapes memory
Einstein researchers find perineuronal nets that stabilize memory circuits temporarily weaken during …
DAILY DOSE: Turns Out Nazi German’s Chances of Building Atomic Bomb Were Slim; Jerusalem Measles Outbreak Proves Deadly For Children.
New research challenges claims about Nazi Germany's atomic bomb progress; significant material …
Sweeteners shown to slow growth of important gut bacteria in lab tests
Cambridge researchers find sweeteners combined with common drugs like antidepressants can strongly …
Bacterial cellulose offers a sustainable path for high-performance energy storage
A review of bacterial cellulose-derived carbon electrodes highlights a sustainable path toward …

It was found that more frequent, lower energy flares had a greater impact on an exoplanet’s atmosphere than less frequent, higher energy flares. The researchers also determined how different types of stars extreme ultraviolet radiation (XUV) through stellar flares, and how nearby planets are affected.

The ability to sustain an atmosphere is one of the most important requirements for a habitable planet. This research provides new insights into the habitability of exoplanets, as the effects of stellar activity were not well understood. This study also highlights the need for better numerical modeling of atmospheric escape – how planets release atmospheric gases into space – as it can lead to the erosion of atmosphere and the diminishment of the planet’s habitability.

“Given the close proximity of exoplanets to host stars, it is vital to understand how space weather events tied to those stars can affect the habitability of the exoplanet,” said Atri. “The next research step would be to expand our data set to analyze stellar flares from a larger variety of stars to see the long-term effects of stellar activity, and to identify more potentially habitable exoplanets.”


Exit mobile version