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Cheyava Falls
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Cheyava Falls is a rock discovered on Mars in 2024 by NASA's Perseverance rover during its exploration of the Jezero crater. This rock, named after a Grand Canyon waterfall, has drawn significant attention due to its potential as an indicator of ancient life on Mars. The rover's instruments detected organic compounds within the rock, which are essential for all known life.[1][2] According to NASA, Cheyava Falls "possesses qualities that fit the definition of a possible indicator of ancient life".[3][1]
Discovery
An unusual rock, named Cheyava Falls, was found in 2024 by NASA's Perseverance rover in Jezero crater. Cheyava Falls is characterized by large white calcium sulfate veins and bands of reddish material, indicative of hematite, a mineral that gives Mars its rusty color. The veins are "filled with millimeter-size crystals of olivine".[1] The rock features millimeter-sized off-white splotches surrounded by black material, resembling "leopard spots". These spots contain iron and phosphate, elements often associated with microbial life.[1][3][4][5] According to a seven-step scale called Confidence of Life Detection (CoLD) used by NASA astrobiologists, the rock is on Step One, showing "possible signal" of life.[1]

The "arrowhead-shaped rock" was found at the northern edge of Neretva Vallis area,[6] on 18 July 2024,[7] and is 3.2 by 2 feet (0.98 m × 0.61 m).[1] On 21 July 2024, Perseverance took a sample of the rock that became its 22nd core sample that can be delivered to Earth by a future mission.[1] The rover made a "selfie" with a rock on 23 July 2024.[8] The sample from Cheyava Falls is called the "Sapphire Canyon",[9] while the formation where Cheyava Falls were found is called the "Bright Angel", a set of rocky outcrops on the northern and southern edges of Neretva Vallis, an ancient river valley 400 metres (1,300 ft) wide that was carved by water rushing into Jezero crater. The rock was studied by two instruments: the Planetary Instrument for X-Ray Lithochemistry (PIXL) and Scanning Habitable Environments with Raman and Luminescence for Organics and Chemicals (SHERLOC).[10]
Beyond the nickname for a single sampled boulder, mission geologists now use "Cheyava Falls member" for a ~0.5 m-thick mudstone containing rare centimeter-scale olivine-rich horizons. At the northern Bright Angel–Margin-unit contact, it overlies the monomict, matrix-supported olivine granule conglomerate of the Fern Glen Rapids member and is itself overlain by the laminated mudstones of the Walhalla Glades member; the Tuff Cliff base is not exposed at this site.[11]
Potential biosignature
On 10 September 2025, NASA reported a "potential biosignature" finding in Cheyava Falls: organic-carbon–bearing mudstones hosting sub-millimetre nodules and millimetre-scale reaction fronts enriched in ferrous iron phosphate and iron sulfide, consistent with vivianite and greigite, imply low-temperature, post-depositional redox reactions between organics and Fe–S–P minerals; these textures and chemistries are potential biosignatures but require sample return for confirmation.[10][12] On Earth, vivianite is frequently found in sediments, peat bogs, and around decaying organic matter. Similarly, certain forms of microbial life on Earth can produce greigite.[10]
If confirmed, this biosignature would mean that there was microbial life on Mars around 3.5 billion years ago. According to geologist Michael Tice:[13]
If the Cheyava Falls results ultimately do lead to the proof of ancient life on Mars ... that means two different planets hosted microbes getting their energy through the same means at about the same time in the distant past. That could suggest that early life learns how to survive in this way regardless of where it originated.
The same organic materials can be produced by non-biological processes which require "hot conditions" like volcanic activity; the rock location suggests that it was underwater, and there is no detected past volcanic activity in that region.[13]
Perseverance's SHERLOC, a deep-ultraviolet Raman spectrometer, detected organic carbon distributed throughout fine-grained mudstones, and logged hundreds of detections of macromolecular carbon (MMC), a cross-linked, decomposition-resistant network of reduced carbon. This is the most robust organic detection yet made in Jezero crater and the first detection of macromolecular carbon on Mars. The team used the neutral term "MMC" rather than "kerogen" or "bitumen" to avoid implying a biological origin, and state that in-situ Raman spectroscopy cannot determine whether the carbon is biotic, abiotic, or meteoritic. Possible sources are serpentinization, electrochemical CO₂ reduction, igneous processes, interplanetary-dust infall, and biology; the source is resolvable only by returning the samples to Earth.[14]
In the abraded interior of Cheyava Falls ("Apollo Temple"), the strongest carbon signals coincide with secondary carbonate and sulfate minerals, though at the nearby "Walhalla Glades" target the carbon is in the primary silicate matrix and is absent from the iron-phosphate-rich dark grains. Because carbonates and sulfates mark later fluid alteration while the silicate matrix is primary, this dual association implies the organics relate to both the original sediment deposition and one or more later fluid events. At the Cheyava Falls surface the carbon does not cleanly track the "leopard spots", partly because the grains are below the imager's resolution and an instrument focus offset blurred the signal, so this study does not establish that the organics reside in the spots themselves.[14]
Bright Angel is roughly 3,500 km from Curiosity's organic detections at Gale crater, so finding comparable organics here suggests organic matter may have been geographically widespread on Mars around 3.5 billion years ago. The carbon is confirmed to be not graphite, but its specific type and origin remain unresolved.[14]
Reception
In two surveys conducted within days of each discovery, Peter Vickers et al. asked astrobiologists whether they thought extraterrestrial life had probably been found. For Cheyava Falls, 15.1% agreed, 44.6% disagreed, and 40.3% were neutral. For the exoplanet K2-18b, whose atmosphere had been reported in April 2025 to show possible traces of dimethyl sulfide, mainly associated with life on Earth, only 6.6% agreed, "nearly two-thirds disagreed" and 28.0% were neutral. Strong disagreement fell from 35.1% in the K2-18b survey to 11.1% for Cheyava Falls.[15][16]
Further research
Perseverance was not designed to look for life on Mars, so to determine whether the organics detected on Mars is of biological or non-biological origin, further research on Earth is needed. For example, it is impossible to obtain the isotopic signature of the detected carbon, and determine its chirality.[17]
NASA-ESA Mars Sample Return mission was designed to collect the samples collected by Perseverance and deliver them to Earth. In a 2026 budget proposal, the mission was deemed "financially unsustainable" by the Donald Trump administration and proposed to be canceled.[18]
An article in The Economist compared the planned sample return from Cheyava Falls with the return of a stranded astronaut from the 2011 book (and 2015 film), The Martian.[19]
According to the first author of an article in Nature, Joel Hurowitz, "labs on Earth could look for ways of achieving the same effects without either biology or high temperatures"; but even if it can be done, the result might fail the Knoll criterion: "to be evidence of life, an observation has to not just be explicable by biology; it has to be inexplicable without it".[19]
Gallery
- Neretva Vallis river channel, an area of interest “Bright Angel” is the light-toned area in the distance at right
- 360-degree view of a region on Mars called "Bright Angel", where an ancient river flowed billions of years ago. Cheyava Falls is slightly right of center, about 361 feet (110 meters) from the rover.[20]
- Perseverance's path through Neretva Vallis and views of the Bright Angel formation[12]
- The Beaver Falls workspace[12]
- Rocks at Bright Angel formation
- Wide angle Navcam image of Cheyava Falls boulder[22]
- Cheyava Falls boulder, larger context image from Watson Camera[23]
- Mastcam-Z Views 'Leopard Spots' in Perseverance's Drill Bit[24]
- Sapphire Canyon sample
- Layering, nodules, reaction fronts and organic detections[12]
See also
References
- 1 2 3 4 5 6 7 "NASA's Perseverance Rover Scientists Find Intriguing Mars Rock". NASA Jet Propulsion Laboratory (JPL). Retrieved 31 July 2024.
This article incorporates text from this source, which is in the public domain. - ↑ "Perseverance Finds a Rock With 'Leopard Spots'". NASA Jet Propulsion Laboratory (JPL). Retrieved 31 July 2024.
This article incorporates text from this source, which is in the public domain. - 1 2 Koren, Marina (26 July 2024). "We Might Get Thrilling News About Aliens … in 2040". The Atlantic. Archived from the original on 30 July 2024. Retrieved 31 July 2024.
- ↑ "Leopard Spots". NASA Scientific Visualization Studio. NASA. 6 June 2025. Retrieved 10 September 2025.
- ↑ "PIA26368: Perseverance Finds a Rock With 'Leopard Spots'". NASA/JPL Photojournal. NASA/JPL-Caltech. 25 July 2024. Retrieved 10 September 2025.
- ↑ Wizevich, Eli (29 July 2024). "Mars Rover Finds Three Possible Signs of Ancient Life on a Single Rock". Smithsonian Magazine. Archived from the original on 25 August 2024. Retrieved 25 August 2024.
- ↑ Strickland, Ashley (26 July 2024). "NASA's Perseverance rover may have just found what it was looking for on Mars". CNN. Archived from the original on 25 August 2024. Retrieved 25 August 2024.
- ↑ "Perseverance's Selfie With 'Cheyava Falls'". NASA Jet Propulsion Laboratory (JPL). Retrieved 25 August 2024.
This article incorporates text from this source, which is in the public domain. - ↑ "Meet the Mars Samples: Sapphire Canyon (Sample 25) - NASA Science". 10 April 2025. Archived from the original on 10 September 2025. Retrieved 12 September 2025.
- 1 2 3 "NASA Says Mars Rover Discovered Potential Biosignature Last Year". NASA. 10 September 2025. Archived from the original on 10 September 2025. Retrieved 10 September 2025.
This article incorporates text from this source, which is in the public domain. - ↑ Jones, Alexander; Barnes, Robert; Gupta, Sanjeev; Paar, Gerhard; Horgan, Briony; Garczynski, Bradley; Broz, Adrian; Klidaras, Athanasios; Stack, Kathryn; Hurowitz, Joel; Russell, Patrick; Iii, Jim Bell; Maki, Justin; Wogsland, Brittan; Simon, Justin; Kanine, Oak; Mangold, Nicolas; Randazzo, Nicolas; Brown, Adrian; Flannery, David (9 July 2025). A fluvio-lacustrine environment preserved in the Jezero crater inlet channel, Neretva Vallis (Mars). EPSC-DPS Joint Meeting 2025, Helsinki, Finland, 7–12 Sep 2025, EPSC-DPS2025-888. Copernicus Meetings.
- 1 2 3 4 Hurowitz, Joel A.; et al. (10 September 2025). "Redox-driven mineral and organic associations in Jezero Crater, Mars". Nature. 645 (8080): 332–340. Bibcode:2025Natur.645..332H. doi:10.1038/s41586-025-09413-0. PMC 12422973. PMID 40931152.
- 1 2 Landau, Elizabeth (12 September 2025). "This is the best evidence yet for ancient life on Mars". National Geographic. Archived from the original on 11 September 2025. Retrieved 12 September 2025.
- 1 2 3 Murphy, Ashley E.; et al. (26 June 2026). "Spatially distributed complex organic matter detected in an ancient river valley in Jezero crater, Mars". Science Advances. 12 (26) eadx0047. Bibcode:2026SciA...12x0047M. doi:10.1126/sciadv.adx0047. ISSN 2375-2548. PMC 13292988. PMID 42341131.
- ↑ Vickers, Peter (5 June 2026). "Could it be aliens? From Cheyava Falls on Mars to exoplanet K2-18b – here's what scientists really think". The Conversation. doi:10.64628/ab.e46ewcruc.
- ↑ Vickers, Peter; Cowie, Christopher; Hamilton, Jesse; McMahon, Sean; Mitchell Finnigan, Samantha (2026). "Comparing astrobiologists' confidence in extraterrestrial life claims for K2-18 b and Cheyava Falls". Nature Astronomy. 10 (6): 774–776. doi:10.1038/s41550-026-02876-9. ISSN 2397-3366. Retrieved 5 August 2026.
- ↑ Krywko, Jacek (4 July 2026). "A martian rock has lots of carbon on it, and it's not clear why". Ars Technica. Retrieved 5 July 2026.
- ↑ Patel, Kasha (10 September 2025). "NASA discovers 'clearest sign of life that we've ever found on Mars'". The Washington Post.
- 1 2 "NASA has found a Martian rock with what may be signs of life". The Economist. Retrieved 17 September 2025.
{{cite news}}: CS1 maint: deprecated archival service (link) - ↑ "Perseverance Captures 'Bright Angel' in 360 Degrees". NASA Jet Propulsion Laboratory (JPL). Archived from the original on 25 August 2024. Retrieved 25 August 2024.
This article incorporates text from this source, which is in the public domain. - ↑ "Mastcam-Z Views the 'Cheyava Falls' Workspace". NASA Jet Propulsion Laboratory (JPL). Archived from the original on 25 August 2024. Retrieved 25 August 2024.
This article incorporates text from this source, which is in the public domain. - ↑ "Perseverance Rover sol 1196". areo.info. Retrieved 15 September 2025.
- ↑ "Perseverance Rover sol 1197". areo.info. Retrieved 15 September 2025.
- ↑ "Mastcam-Z Views 'Leopard Spots' in Perseverance's Drill Bit". NASA Jet Propulsion Laboratory (JPL). Archived from the original on 25 August 2024. Retrieved 25 August 2024.
This article incorporates text from this source, which is in the public domain.
External links
Media related to Cheyava Falls at Wikimedia Commons- Our best proof of life on Mars yet? A deep dive into Cheyava Falls, The Planetary Society
