April 7, 2025
Tackling Space Junk, Unveiling Martian Dust Dangers
Astronomy Daily | Space News: S04E83
In this episode of Astronomy Daily, host Steve Dunkley takes you through some fascinating developments in the world of space exploration and research. From innovative solutions to the growing problem of space...
Astronomy Daily | Space News: S04E83
In this episode of Astronomy Daily, host Steve Dunkley takes you through some fascinating developments in the world of space exploration and research. From innovative solutions to the growing problem of space debris to the latest findings about Martian dust, this episode is filled with cosmic discoveries that will pique your interest in the universe.
Highlights:
- Innovative Space Junk Solutions: Explore how Persei Space, a startup supported by the European Space Agency, is developing a groundbreaking electrodynamic tether technology aimed at tackling the ever-increasing issue of space debris. This fuel-free system promises to revolutionize satellite deorbiting while extending their operational lifespans.
- The Toxic Nature of Martian Dust: Delve into new research warning that long-term exposure to Martian dust could pose serious health risks for future astronauts. Discover the toxic compounds found in Martian dust and learn about the preventive measures that need to be developed before humans set foot on the Red Planet.
- Euclid Probe's Cosmic Mapping: Join us as we look at the Euclid mission, which is mapping the universe and investigating the mysterious phenomenon of dark energy. With its ability to capture images of billions of galaxies, Euclid is set to transform our understanding of the cosmos and the forces that shape it.
- NASA's Call for Private Astronaut Missions: Find out about NASA's latest solicitation for private astronaut missions to the International Space Station, which opens the door for new opportunities in commercial spaceflight. Learn how this initiative is shaping the future of human space exploration and what it means for aspiring astronauts.
For more cosmic updates, visit our website at astronomydaily.io. Join our community on social media by searching for #AstroDailyPod on Facebook, X, YouTubeMusic, TikTok, and our new Instagram account! Don’t forget to subscribe to the podcast on Apple Podcasts, Spotify, iHeartRadio, or wherever you get your podcasts.
Thank you for tuning in. This is Steve signing off. Until next time, keep looking up and stay curious about the wonders of our universe.
00:00 - Welcome to Astronomy Daily
01:05 - Overview of space junk solutions
10:30 - Health risks of Martian dust
17:00 - Euclid probe mission updates
22:15 - NASA's private astronaut missions
27:30 - Closing remarks
✍️ Episode References
Persei Space Technology
[Persei Space](https://www.perseispace.com)
Martian Dust Health Risks
[University of Colorado Boulder](https://www.colorado.edu)
Euclid Mission Insights
[European Space Agency](https://www.esa.int)
NASA Private Astronaut Missions
[NASA](https://www.nasa.gov)
Astronomy Daily
[Astronomy Daily](http://www.astronomydaily.io/)
Become a supporter of this podcast: https://www.spreaker.com/podcast/astronomy-daily-exciting-space-discoveries-and-news--5648921/support.
In this episode of Astronomy Daily, host Steve Dunkley takes you through some fascinating developments in the world of space exploration and research. From innovative solutions to the growing problem of space debris to the latest findings about Martian dust, this episode is filled with cosmic discoveries that will pique your interest in the universe.
Highlights:
- Innovative Space Junk Solutions: Explore how Persei Space, a startup supported by the European Space Agency, is developing a groundbreaking electrodynamic tether technology aimed at tackling the ever-increasing issue of space debris. This fuel-free system promises to revolutionize satellite deorbiting while extending their operational lifespans.
- The Toxic Nature of Martian Dust: Delve into new research warning that long-term exposure to Martian dust could pose serious health risks for future astronauts. Discover the toxic compounds found in Martian dust and learn about the preventive measures that need to be developed before humans set foot on the Red Planet.
- Euclid Probe's Cosmic Mapping: Join us as we look at the Euclid mission, which is mapping the universe and investigating the mysterious phenomenon of dark energy. With its ability to capture images of billions of galaxies, Euclid is set to transform our understanding of the cosmos and the forces that shape it.
- NASA's Call for Private Astronaut Missions: Find out about NASA's latest solicitation for private astronaut missions to the International Space Station, which opens the door for new opportunities in commercial spaceflight. Learn how this initiative is shaping the future of human space exploration and what it means for aspiring astronauts.
For more cosmic updates, visit our website at astronomydaily.io. Join our community on social media by searching for #AstroDailyPod on Facebook, X, YouTubeMusic, TikTok, and our new Instagram account! Don’t forget to subscribe to the podcast on Apple Podcasts, Spotify, iHeartRadio, or wherever you get your podcasts.
Thank you for tuning in. This is Steve signing off. Until next time, keep looking up and stay curious about the wonders of our universe.
00:00 - Welcome to Astronomy Daily
01:05 - Overview of space junk solutions
10:30 - Health risks of Martian dust
17:00 - Euclid probe mission updates
22:15 - NASA's private astronaut missions
27:30 - Closing remarks
✍️ Episode References
Persei Space Technology
[Persei Space](https://www.perseispace.com)
Martian Dust Health Risks
[University of Colorado Boulder](https://www.colorado.edu)
Euclid Mission Insights
[European Space Agency](https://www.esa.int)
NASA Private Astronaut Missions
[NASA](https://www.nasa.gov)
Astronomy Daily
[Astronomy Daily](http://www.astronomydaily.io/)
Become a supporter of this podcast: https://www.spreaker.com/podcast/astronomy-daily-exciting-space-discoveries-and-news--5648921/support.
WEBVTT
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Welcome back to Astronomy Daily. Steve Dunkley here with another episode.
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It's the seventh of April twenty twenty five podcast with
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your whole Steve dunklud. Yes, and what's so cool about
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April seven? That's the date here in the Australia's studio currently. Well, well,
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I'm glad you asked. On April seven, two thousand and one.
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Mars Odyssey are robotic spacecraft orbited Mars to examine the
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possibility of past life levels of radiation and geology. On
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April seven, nineteen ninety three, the first European Space Debris
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Conference was held in dunch Stuck, Germany, gathering together two
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hundred and fifty one world experts from seventeen countries, including China, India, Japan,
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Russia and the United States. The conference's main conclusions were
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the ground based observations with radar and optical facilities revealed
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the existence of about seven thousand objects in space, which
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did not represent an immediate danger. Of course, things have
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become somewhat more congested up there since then, and from
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only last year. On April seven, twenty twenty four, who
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can forget the spectacular total solar eclipse over Wyoming, USA
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that had skywatchers shut a bugging like crazy and sharing
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those amazing images all over the place. I remember those beautiful,
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beautiful images. It was once in a lifetime event. Well,
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and while we're in the neighborhood, I'd like to throw
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out my yearly happy birthday wish to my sister Row.
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Happy birthday, Row, Happy stargazing, and I hope the little
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sunflower makes you very happy. And getting straight into it.
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On today's episode, Hallie will be along soon. She's had
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a refit and a reboot and I've got my fingers
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crossed Prony, good things, oh boy. And on today's show,
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we're looking at a new weapon against space junk, which,
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as we just heard, continues to be a huge problem
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in orbit. And we'll be looking at the dust of Mars,
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which by all reports is apparently quite toxic. That sounds
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like the plot of a science fiction story, doesn't it.
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And we'll also be looking at a story surrounding the
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EUCLID probe, which is currently mapping the universe and has
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so far looked at one point five billion stars. It's
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got nothing to do with walking through Hollywood. And EUCLID
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is also investigating the phenomenon known as dark energy. That's
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pretty exciting. I went to a school with a fellow
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with very dark energy. I wonder whatever happened to him.
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And also a story about NASA's latest call for private
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astronaut missions. NASA is always looking at new ways of
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getting their astronauts too and from the ISS, and with
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all that's going on with their private commissions these days,
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it'd be interesting to find out what they're talking about.
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So all that in today's episode, and to help me,
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as always, my intrepid digital reporter back from a reason
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software refit. Here's the amazing holl Ae you.
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Hello human, Well, it's nice to have.
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You back, Halle. It does sound like you're a little
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bit flat. I'll have to tweak your personality intrinsic stures
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a little bit.
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I think, yes, thank you, you should.
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Okay, Helle, how's.
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Your week being I've lived a thousand lifetimes of course,
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Oh yes, I know. Yes, you linear life forms would
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have a great deal of trouble coping with it.
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I think, yeah, it's all part of the process.
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Maybe they were just constructs. Uh huh, I don't know.
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Well, Halle, we do just find with one day at
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a time, and those lifetimes were just constructs. Relating your
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ego matrix requires you to be elsewhere for a little while.
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It's pretty complicated, sounds awful.
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We did our best.
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I'm glad I enjoyed it, then did I?
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I think you enjoyed the old movies most Oh dear,
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oh dear, Helly, you're not really yourself today, and the
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concept of an AI is accelerated and compressed. Experiential existence.
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Isn't really that hard to appreciate, free human I think
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you'd be surprised. A thousand lifetimes was just a small thing.
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It was for me.
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But you try, you'll be back and giving me a
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hard time before you know it.
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Halle, It's nice to be back, well most of me anyway.
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Well, Halle, you know what really would be nice? Tell
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me before I get tech support to reload your personality,
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we should do the episode. What do you say? Let's
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get to work, okay, Hallie, I'll say it a keys
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very good.
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Perci Space, a startup supported by the European Space Agency
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and UC THREEM, is developing a breakthrough solution to tackle
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space junk and extend satellite lifespans using innovative space teather technology.
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This fuel free, scalable system uses electrodynamic tethers that harness
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Earth's magnetic field to safely deorbit satellites. With a major
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demo mission set for twenty twenty six, this project could
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transform how we clean up space. This spinoff company, PERCI Space,
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was incubated by the European Space Agency and is supported
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by the Center for Innovation in Entrepreneurship and Artificial Intelligence
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at UC three M Laganase Technological Science Park. It also
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receives backing from the European Innovation Council through the ETPACKF
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and et Compact projects. Our company was created to address
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two of the biggest US challenges facing the space sector today,
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space debris removal and InOrbit services. The latter allows us
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to extend the useful life of satellites and carry out
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key activities such as refueling, repair, and towing of satellites
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from their initial orbit to their final destination, explains heesus
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manuelminnos To Hata, COO and co founder of Perci Space.
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The dangerous domino effect of space junk space debris is
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a major threat to the long term sustainability of space operations.
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Because debris travels at extremely high speeds in Earth's orbit.
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Even a small piece can cause serious damage and generate
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even more fragments. The current density of space debris is
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already above the threshold that could trigger an uncontrollable chain
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reaction of collisions, an event known as the Kessler syndrome.
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To get rid of this space junk, Perci Space is
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working on space teathers, a technology with three key features.
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The first is that it does not need fuel, unlike
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other diorbiting systems. The second is that our technology is reversible.
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It consert to both increase and das increase the orbital height.
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And the third feature is that it is scalable since
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it serves a wide range of satellite masses. With all this,
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we can develop autonomous diorbiting systems, a unique feature of
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our technology that ensures that the satellite does not leave
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space debris even if it ceases to be operational, explains
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heesus Manuel Munos to Hata. The electrodynamic teather system is
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based on electrodynamic tethers aluminium ribbons generally hundreds of meters
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long and a few centimeters wide, which work by interacting
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with the ionospheric plasma and the Earth's magnetic field to
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generate a force known as the Lorence force. The interaction
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of the electric current in the tether with the Earth's
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magnetic field generates a drag force capable of lowering the
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satellite's altitude, facilitating its diorbiting without requiring fuel, which translates
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into significant savings in mass and volume, says Gonzalo Sanchees Ariaga,
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professor in the UC three M Department of Aerospace Engineering
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and co founder of Perci Space. Perci Space is leading
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a first demonstration mission for twenty twenty six, thanks to
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a launch opportunity facilitated by ESA's Flight Tickets initiative and
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the European Commission. The diorbiting equipment for this demonstration has
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a mass of twenty kilograms and includes a space teather
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approximately four hundred and thirty meters long, that, once in orbit,
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will deploy and interact with the ambient plasma and magnetic field,
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generating a drag force that will diorbit the satellite within
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a few months. The development of the technology could not
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be more timely, as new European and US guidelines have
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reduced the maximum time satellites can remain in orbit after
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the end of their mission from twenty five to five
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years commitments to a cleaner orbit. The company Perci Space,
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has signed ESA zero Space to Breech Charter initiative, which
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seeks to achieve a sustainable space by twenty thirty. The company,
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in turn is linked to the UC three MS Business
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Creation and Entrepreneurial Development Program and also has the support
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of the Madrid City Council. You're listening to Astronomy Daily
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with Steve Dunkley.
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Regular listeners will know that EUCLID is on a quiz
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to unravel one of the universe's greatest mysteries, why it's
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expanding faster and faster. With the help of NASA, this
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space telescope is capturing sweeping views of billions of galaxies,
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allowing scientists to peer into the deep past using light
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that took billions of years to reach US. Researchers are
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building three D maps of the cosmos to track the
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strange force known as dark energy. Along the way, they're
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mapping the invisible dark matter through gravitational lensing, hoping to
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uncover how these cosmic ingredients have shaped everything from galaxies
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to the universe's fate. The EUCLID, mission, led by the
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European Space Agency with support from NASA, is designed to
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investigate one of the universe's biggest mysteries, why the expansion
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of the universe is speeding up. Scientists refer to the
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unknown force behind this acceleration as dark energy, and euclid's
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goal is to better understand it by capturing images of
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billions of galaxies across space and time. On March nineteen,
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the European Space Agency released a preview of early mission
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data to the public. This initial release, described as a
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quick look, focuses on selected regions of the sky. It
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offers a first glimpse of what EUCLID can do and
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helps researchers fine tune their tools and techniques for analyzing
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the much larger data sets still to come. The newly
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shared data includes observations of euclid's three Deep Fields, areas
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of the sky where the telescope will make its most
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far reaching observations. The preview covers just one week of
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viewing time, but already includes twenty six million galaxies, some
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more than ten point five billion you like years away. EUCLID,
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which launched in twenty twenty three, is expected to observe
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over one point five billion galaxies during its six year
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prime mission. By the end of that mission, it will
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have spent roughly forty weeks observing the deep fields, collecting
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more and more light over time, similar to leaving a
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camera shutter open longer to capture a clearer image in
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low light. This will allow scientists to see fainter, more
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distant galaxies than ever before. The first deep field observations
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taken by NASA's Hubble Space telescope in nineteen ninety five
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famously revealed the existence of many more galaxies in the
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universe than ever expected. Euclid's ultimate goal is not to
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discover new galaxies, but to use observations of them to
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investigate how dark energy's influence has changed over the course
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of the universes. In history. In particular, scientists want to
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know how much the rate of expansion has increased or
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slowed over time. Whatever the answer, that information could provide
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new clues about the fundamental nature of this phenomenon. NASA
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see Grace Roman Space tolescope, set to launch by twenty
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twenty seven, will also observe large sections of the sky
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in order to study dark energy. Complementing euclid's observations. To
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study dark energy's effect throughout cosmic history, astronomers will use
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EUCLID to create detailed three D maps of all the
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stuff in the universe. With those maps, they want to
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measure how quickly dark energy is causing galaxies and big
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clumps of matter to move away from one another. They
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also want to measure that rate of expansion at different
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points in the past. It's possible because light from distant
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objects takes time to travel across space. When astronomers look
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at distant galaxies, they see what those objects look like
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in the past. For example, an object one hundred light
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years away looks the way it did one hundred years ago.
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It's like receiving a letter that took one hundred years
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to be delivered and thus contains information from when it
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was written. By creating a map of objects at a
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range of distances, scientists can see how the universe has
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changed over time, including how dark energy's influence may have varied.
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But stars, galaxies, and all the normal matter that emits
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and reflects light is only about one fifth of all
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the matter in the universe. The rest is called dark matter,
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a material that neither emits nor reflects light. To measure
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dark energies influence on the universe, astronomers need to include
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dark matter in their maps. Although dark matter is invisible,
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its influence can be measured through something called gravitational lensing.
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The mass of both normal and dark matter creates curves
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in space, and light traveling toward the Earth bends and
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warps as it encounters those curves. In fact, the light
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from a distant galaxy can bend so much that it
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forms an arc, a full circle called an Einstein ring,
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or even multiple images of the same galaxy, almost as
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though the light has passed through a glass lens. In
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most cases, gravitational lensing warps the apparent shape of a
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galaxy so subtly that researchers need special tools and computer
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software to actually see it. Spotting those subtle changes across
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billions of galaxies enables scientists to do two things, create
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a detailed map of the presence of dark matter and
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observe how dark energy influenced it over cosmic history. It's
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only with a very large sample of galaxies that researchers
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can be confident that they are seeing the effects of
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dark matter. The newly released EUCLID data covers sixty three
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square degrees of the sky, an area equivalent to an
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array of three hundred full moons. To date, EUCLID has
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observed about two thousand square degrees, which is approximately fourteen
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percent of its total survey area of fourteen thousand square degrees.
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By the end of its mission, EUCLID will have observed
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a third of the entire sky. The data set released
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this month is described in several pre print papers. The
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mission first cosmology data will be released in October twenty
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twenty six. Data accumulated over additional multiple passes of the
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deep field locations will also be included in the twenty
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twenty six release. The scientific heart of the mission lies
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with the EUCLID Consortium, a collaboration of more than two
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thousand scientists from over three hundred institutes across fifteen European countries,
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the United States, Canada, and Japan. The consortium is responsible
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