James Webb Space Telescope detects hydrogen atmosphere on lava planet

NASA's James Webb Space Telescope has observed the super Earth 55 Cancri e and found evidence of a hydrogen-rich atmosphere. The planet, located 41 light years from Earth, has a surface hot enough to melt rock due to its extremely close orbit around its star.

Researchers used the telescope to observe five eclipses of the planet, which measures about 1.88 Earth radii and eight Earth masses. It completes an orbit in roughly 0.7 days. The data showed abundant carbon monoxide along with smaller amounts of carbon dioxide and large quantities of hydrogen.

The findings, submitted for publication in Nature Astronomy, suggest the atmosphere forms from gases escaping the planet's molten interior. Variations across the observations may result from volcanic outgassing or temporary clouds.

A study quote states that the results point to an interior with relatively low oxygen fugacity, consistent with outgassing from a reduced magma ocean. The planet was first identified in 2004.

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For the first time, astronomers have found an atmosphere surrounding a rocky, temperate exoplanet that could potentially support life. The planet, LHS 1140b, lies about 50 light years from Earth.

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Astronomers using NASA’s James Webb Space Telescope have studied the atmosphere of TOI-199b, a rare Saturn-sized planet with temperatures around 175 degrees Fahrenheit. The findings mark the first detailed look at a temperate giant exoplanet.

Moons orbiting rogue planets could maintain liquid water oceans for up to 4.3 billion years through tidal heating and hydrogen-rich atmospheres. Researchers from Ludwig Maximilian University of Munich and the Max Planck Institute for Extraterrestrial Physics reached this conclusion in a new study.

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Astronomers have detected carbon monoxide in the lower atmosphere of Uranus for the first time, indicating the planet has a much icier interior than previously thought.

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