The TRAPPIST-1 planetary system was first detected in 2016. Last year, further observations showed that there are at least seven planets in the system, each roughly the same size as the Earth.
These are named TRAPPIST-1b, c, d, e, f, g and h, with increasing distance from the central star.
Scientists led by Simon Grimm at the University of Bern in Switzerland have now applied very complex computer modelling methods to all the available data and have determined the planets' densities with much better precision than was possible before.
"These shifts depend on the planets' masses, their distances and other orbital parameters," he said.
"With a computer model, we simulate the planets' orbits until the calculated transits agree with the observed values, and hence derive the planetary masses," he added.
The measurements of the densities, when combined with models of the planets' compositions, strongly suggest that the seven TRAPPIST-1 planets are not barren rocky worlds, researchers said.
They seem to contain significant amounts of volatile material, probably water, amounting to up to five per cent the planet's mass in some cases. By comparison the Earth has only about 0.02 per cent water by mass, researchers said.
TRAPPIST-1d, meanwhile, is the lightest of the planets at about 30 percent the mass of Earth. Scientists are uncertain whether it has a large atmosphere, an ocean or an ice layer.
TRAPPIST-1e is the only planet in the system slightly denser than Earth, suggesting that it may have a denser iron core and that it does not necessarily have a thick atmosphere, ocean or ice layer, researchers said.
It is mysterious that TRAPPIST-1e appears to be so much rockier in its composition than the rest of the planets.
TRAPPIST-1f, g and h are far enough from the host star that water could be frozen into ice across their surfaces.
If they have thin atmospheres, they would be unlikely to contain the heavy molecules that we find on Earth, such as carbon dioxide.
"It is interesting that the densest planets are not the ones that are the closest to the star, and that the colder planets cannot harbour thick atmospheres," said Caroline Dorn, from the University of Zurich in Switzerland.
Disclaimer: No Business Standard Journalist was involved in creation of this content
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