Level 1 — Absolute Beginner
Mars is a planet. It is red and very dry today. But long ago Mars had water.
A robot called Perseverance drives on Mars. It looks at rocks. It sends pictures and information back to Earth.
The robot studied rocks near an old lake. The lake is called Jezero crater. The water is all gone now.
Scientists say the rocks show water three different times. Water came from under the ground. Water sat in a lake. Hot water moved through the rocks.
- planet
- a large round object that moves around a star
- dry
- with no water in it
- robot
- a machine that can do work by itself
- rock
- the hard stone that the ground is made of
- lake
- a large area of water with land all around it
- crater
- a big round hole in the ground
- scientist
- a person who studies how the world works
- hot
- with a high temperature
Level 2 — Elementary
NASA's Perseverance rover has spent years exploring Jezero crater, a bowl on Mars that once held a lake. Along the edge of that old shoreline there is a band of rock that scientists call the Margin unit, and it has turned out to be far more interesting than anyone expected.
Researchers thought the Margin unit would be made of sediment, the sort of layered mud that settles at the bottom of a lake. Instead it is igneous rock, which forms from melted material deep underground or from volcanoes. That was a surprise, but it was also lucky, because igneous rock records chemical changes very clearly.
A new study published in the journal Communications Earth and Environment describes three separate episodes of water. First, groundwater full of carbon dioxide reacted with a mineral called olivine and left ridges of carbonate in the cracks. Second, the lake itself left silica in the rocks that sat below the waterline. Third, hot water moving underground created veins of calcium sulfate and fluorite in the eastern part of the unit.
The rover read all of this with SuperCam, an instrument on its mast that fires a laser at a rock up to six and a half metres away and studies the glowing gas that results. Candice Bedford of Purdue University, who led the work, said the findings matter because Jezero crater sits inside one of the largest exposures of carbonate anywhere on Mars.
- rover
- a vehicle that drives across the surface of another planet
- shoreline
- the line where land meets a lake or sea
- sediment
- material that settles to the bottom of water
- igneous
- formed from melted rock that has cooled and hardened
- mineral
- a natural solid substance found in rocks
- episode
- a single period during which something happens
- vein
- a thin line of one mineral running through other rock
- instrument
- a tool designed for scientific measurement
Level 3 — Intermediate
When NASA chose Jezero crater as Perseverance's landing site, the attraction was the delta, a fan of sediment left where a river once emptied into a standing lake. The Margin unit, a band of pale rock tracing the crater's inner rim along what was once the shoreline, was a secondary target. It has now produced one of the mission's more revealing results.
The first surprise was compositional. Geologists had assumed the Margin unit would be sedimentary, laid down grain by grain in still water. Analysis showed instead that it is igneous, crystallised from melt either at depth or in volcanic eruption. That matters methodologically, because an igneous rock begins with a known starting chemistry, so any later alteration stands out against it like writing on a clean page.
Reading that page, the team identified three distinct aqueous events. Carbon dioxide rich groundwater attacked the rock's olivine and precipitated carbonate ridges into its fractures at lower elevations. The lake that later filled the crater deposited silica in the rocks that sat beneath its waterline. Finally, heated water circulating through the volcanic rock of the eastern Margin unit left veins of calcium sulfate and fluorite, a signature of hydrothermal activity.
The measurements came from SuperCam, mounted on the rover's mast, which vaporises a pinpoint of rock with a laser from as far as six and a half metres and reads the spectrum of the resulting plasma. Writing in Communications Earth and Environment, lead author Candice Bedford of Purdue University noted that Jezero sits within one of the largest carbonate exposures on Mars, and described the site as a crossroads for aqueous systems. Carbonate and silica environments of this kind can drive hydrogen producing reactions, which on Earth support microbial communities that never see sunlight.
- delta
- a fan shaped deposit of sediment where a river meets still water
- compositional
- relating to what something is made of
- sedimentary
- formed from material that settled out of water or air
- crystallise
- to form solid crystals as a liquid cools
- alteration
- a change made to something after it was first formed
- aqueous
- relating to or containing water
- precipitate
- to cause a solid to separate out of a liquid
- hydrothermal
- involving hot water moving through rock
Level 4 — Advanced
Perseverance was sent to Jezero crater for its delta, the textbook fan of sediment deposited where an ancient river discharged into a standing body of water, and for four years the delta has dominated the mission's scientific narrative. The Margin unit, a pale band following the crater's inner rim along the former shoreline, was always the secondary objective. It has now yielded a result that reframes the site less as a vanished lake than as a long lived and repeatedly reworked hydrological system.
The unit's first surprise was its provenance. A shoreline deposit invites the assumption of sedimentary origin, particles settling grain by grain out of quiet water, and the assumption was wrong. The Margin unit is igneous, crystallised from melt either at depth or during eruption, and that distinction is methodologically fortunate rather than merely curious. An igneous protolith carries a determinate initial chemistry, against which every subsequent episode of fluid alteration resolves with unusual clarity.
Three such episodes emerge from the record. In the first, groundwater charged with carbon dioxide attacked the rock's olivine and precipitated carbonate ridges within fractures at lower elevations, an exchange that implies an active carbon cycle rather than a single inundation. In the second, the lake that subsequently occupied the crater laid down silica in material submerged beneath its waterline. In the third, heated fluid circulating through volcanic rock in the eastern Margin unit emplaced veins of calcium sulfate and fluorite, the unambiguous grammar of hydrothermal circulation.
The stratigraphy was read remotely. SuperCam, mounted on the rover's mast, ablates a pinpoint of target rock with a laser at ranges up to six and a half metres and resolves the mineralogy from the emission spectrum of the resulting plasma. Publishing in Communications Earth and Environment, lead author Candice Bedford of Purdue University observed that Jezero lies within one of the largest carbonate exposures identified on Mars and characterised the locality as a crossroads for aqueous systems. The astrobiological corollary is the point of it all: carbonate and silica settings of this character sustain hydrogen generating water rock reactions, which on Earth underwrite chemosynthetic microbial ecosystems entirely independent of sunlight, and the samples Perseverance has cached are the ones a future mission would return to test that possibility directly.
- provenance
- the origin or earliest known history of something
- hydrological
- relating to the movement and distribution of water
- protolith
- the original rock from which an altered rock was formed
- determinate
- fixed and able to be known precisely
- inundation
- a flood, or a covering of land by water
- emplace
- to put something firmly into position