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The Dark Matter Hint That Could Rewrite Physics

About this episode

Space Nuts: Dark matter clues, Saturn’s new decagon, Mars and Titan missions.
Andrew Dunkley and Professor Fred Watson cover a packed astronomy episode that moves from a tentative dark matter signal to a newly spotted ten sided storm pattern on Saturn. They also dig into two upcoming sample return style missions, one to Mars and one to Titan, before finishing with listener questions about Jupiter’s Great Red Spot, solar missions, gravitational waves, and AI in astronomy.
Key topics
In this episode, Andrew and Fred discuss the Lux-Zeppelin underground detector result, where researchers saw a low-energy flash that might be consistent with dark matter, though the signal is still far short of discovery level.
Fred explains why dark matter is inferred from galaxy rotation and gravitational lensing, and why direct detection experiments need to be buried deep underground and shielded from background noise.
The discussion covers Fred’s own migraine aura experience, including the zigzag visual pattern he describes as a brain-based phenomenon that affects both eyes.
In this episode, they celebrate an outback astronomy success story involving Trevor Barry of Broken Hill, whose long-term Saturn observations helped connect amateur and professional work on planetary atmospheres.
Fred explains Saturn’s famous north polar hexagon and the newly reported south polar decagon, noting that the southern feature appears to have formed only since 2023.
They cover China’s Tianwen-3 Mars sample return plans, including the narrowing of candidate landing sites from 86 to 12 and the mission’s focus on clay-rich terrain that may preserve signs of ancient life.
Fred and Andrew also discuss NASA’s Dragonfly mission to Titan, including the chosen region near Selk crater, the expected 3.3-year primary mission, and why Titan’s dense atmosphere makes rotorcraft flight more practical there than on Mars.
Timestamps
00:00 - Pre-show timing and getting ready to go live
00:49 - Welcome to Space Nuts and what’s coming up
02:23 - Fred joins the show and mentions recovering from knee surgery
03:17 - First story: a possible dark matter detection at Lux-Zeppelin
05:28 - Why dark matter is hard to detect directly
06:56 - Underground detectors and the LZ experiment in South Dakota
08:50 - The flash event and why it is only a hint, not a discovery
11:44 - The 2.6 sigma result and what that means statistically
13:55 - Trevor Barry and the discovery of Saturn’s south polar decagon
16:23 - Saturn’s north polar hexagon and why the south is unusual
17:49 - The decagon’s possible recent formation and what comes next
21:26 - China’s Tianwen-3 Mars sample return mission
23:40 - Candidate landing sites narrowed down and why clays matter
25:20 - NASA’s Dragonfly mission to Titan
26:03 - Why the Titan landing region near Selk crater is scientifically interesting
27:31 - Dragonfly’s three point three year primary mission and Titan’s chemistry
29:09 - Listener shout-outs and wrapping the first half


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The Dark Matter Hint That Could Rewrite Physics

Space Nuts: Astronomy Insights & Cosmic Discoveries

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Space Nuts: Astronomy Insights & Cosmic DiscoveriesThe Dark Matter Hint That Could Rewrite Physics. Machine-transcribed; use the interactive transcript above to jump the player to any line.

Booking a verbo vacation rental means you get Verbo care in 24-7 life support, verified reviews from real guests and top-rated homes with the love by guest filter. I just booked my Verbo because there was a sweet line for it. We all have our reasons. If you know, give Verbo. Terms apply. See Verbo.com slash trust for details. McDonald's is putting value back on the menu. Whether you're craving a big mac, McNuggets are sausage egg and cheese, McGrittle's, make it a meal and save. Your favorite is now your wallet's favorite too. Extra value meals are back. Get a big something extra. With a big mac or 10-piece McNuggets, fries and a medium Coke, all for just $9. Limited time only, promotion pricing may be lower than meal pricing. Hello again. Thanks for joining us on Space Nuts, where we talk astronomy and space science. My name is Andrew Dunkley. Thanks for joining us. We've got a jam-packed program today. Lots of things happening. A case here from Colorado, one of our regular Q&A contributors,

put a post on Facebook and I believe sent through an email to us saying, have we found dark matter? Well, according to the Lux Zeppelin scientists, there's a tiny, weeny small chance we might have. I think that's the best way to describe it. There's a wonderful story involving outback astronomy and there's been a new satin decagon discovered. We'll tell you all about that. A couple of upcoming missions, China, is planning a sample return mission to Mars and they've whittled down their 84 potential landing zones to 12 and I think they're going to get it down to less than that perhaps. And another similar mission headed for Titan. We'll talk about all of that on this episode of Space Nuts. 15 seconds, guidance is internal. 10, 9, ignition sequence start. Space Nuts. 5, 4, 3, 2, 1, 2, 3, 4, 5, 4, 3, 2, 1.

Space Nuts. As the national board, it feels good. And joining us again is Professor Fred Watson astronomer, large. Hello Fred. Hi Andrew, how you doing? I am well, how you? Still nursing a new knee, but the great thing, of course, always when you've had a replacement knee is that day by day gets better. Whereas before the operation day by day gets worse. Yeah, well that makes a lot of sense. You wouldn't want it the other way around. No, you wouldn't, that's right. Well, if it was the other way around, you wouldn't need any operation. Okay, we should get straight into it because we've got a lot of topics to discuss. And our first story, I know you've done a bit radio on this one, but Casey and Colorado sent this one through and physicists at the Lux Zeppelin detector in the United States. I think they may have uncovered dark matter. This would be extraordinary if they have.

Now the odds are pretty low, but they haven't said it's definitely not dark matter. Would that be a fear assessment? Yeah, that's right. I'm looking at the wrong script on this at the moment. And in fact, I'm struggling to see anything because I've got a migraine going on here at the bottom of the hole. Do you get those where you just get this lovely zigzag pattern and cross your face? No, I'm very lucky, but my brother and sister both get those kinds of headaches. Well, there's no headache. There's no headache with it. It's just this extraordinary pattern that has a text about half an hour to mature. It starts off in the middle of your field of view when you can't see anything. And then it broadens out. And it's something I've observed since, I think the first time I remember it was about 16. The first time I remember noticing it. I thought, you know what, I used to have that. And I couldn't explain, I never got to check that. I just thought it was my eyes doing stupid things, but I used to have a zigzag in my vision.

It happened only a few months ago and hasn't happened again since, but it used to be quite regular. And now it's very rare. Well, there you go. Yeah. Wow. It's basically a spuzzle in a nerve in your brain. And the reason you know it's something going on in your brain is that it's in both eyes. It's not, you know, you can't distinguish between the two. I'm so sorry to have diverted that. No, no, no, it's fast. Well, you've actually alerted me to something that I've never known existed. There you go. So it's a headache less of me, crane. And there's sometimes come with quite striking colors as well. This one's fairly benign. The one I'm looking at at the moment. Can disrupt what you're trying to do. Yeah, it's not good if you're driving. No, definitely not. Yeah. So sorry about that. No, I'm gobsmacked because I never knew it was a thing. It is a thing. It is a thing and you had it. You see, and you didn't know. You need me to tell you

what you're what you're held by. But back to dark matter, maybe. This regrowing to cause by dark matter interaction. So as I think probably all our listeners know, because we've gone about this stuff in term, in term innably, the evidence for dark matter primarily has come from the astronomy world because we see evidence that there is material in the universe, which we cannot detect. And that evidence ranges from galaxies spinning faster than they ought to, if all that's there is dark matter, it's normal matter to what we call gravitational microlensing, objects, galaxies or gravitational lensing rather than microlensing. Galaxies in deep space, they're dark matter halos, actors, alens, and you can see its effects on the stars behind. And that lets you plot out whether dark matter lies. And we know dark matter

is where normal matter is. So it's some stuff that is real. But the conjecture has always been that if it interacts with normal matter at all, it is extremely rarely. In other words, you know, you need gazillions of collisions between matter and dark matter for one of them to produce a measurable signal. And so that is the basis of some of the detectors that have been built around the world to try and detect dark matter directly. And in fact, there's one here in Australia. It's at a place called Stahl in Victoria. It's down a gold mine, I think. You bury these things deep in the earth so that you're minimizing terrestrial effects. You've minimized anything that could be happening near the surface. And what you do is you typically, and the one that we're,

as I should just go straight to the one that we're talking about, it's an experiment at the Sanford Underground Research Facility in South Dakota. And that is an experiment called Lux Zeppelin, usually abbreviated to LZ, I guess it would be rather than LZ. LZ, that is an experiment that, if I remember rightly, I don't have my notes in front of me on this. It's got something like about, I think it's 10 tons of liquid xenon, something that's normal gaseous, normal temperature but is liquefied. So 10 tons of this stuff, deep underground. And what you do is you have a tank which is fastened with photo detectors. So if anything flashed in the tank of xenon, you could identify it. And more especially because you've got lots of detectors, you could

track a particle if that's, you know, the way it goes because you've got multiple detectors, which are all active all the time. So that is where it's got to in terms of the experiment, but what's happened is they've detected a flash. Yeah. Which is a result, I think it was announced only a few days ago, 1st of September. In many ways it's the first hint, certainly the first hint that's come from the USA that maybe one of these collisions has been observed. Now, I'm not a particle physicist Andrew, as you know, I'm supposed to be an astronomer, probably amateurly in some ways. And the, so I'm not sure of the exact nature of the observation, whether they observe this flash in different wavelengths, in other words, using different filters

and can analyze what the spectrum of that flash looks like, or whether it's something more subtle than that. But that is what is currently going on now. And I think the surprise is that this thing has a relatively low energy. It's a slow particle. And if they're talking about energies of, I think it's in the region of 250 kiloelectron volts, KV, 248 KV of energy in the detector. Now, the large hundred collider collides particles up to terrible energies. So a killer volt, a terrible, a very wide apart. But that's an interesting aspect of this. So I think it's one of these stories that will evolve. I mentioned a minute ago that this was the first time it's been detected, or there's any kind of detection in the US. And that's because there's an experiment

at a facility called Gran Saso, National Laboratories, which is in Italy. And there's one in China, two, which I think these, certainly the Italian one has picked up things before. And there's evidence from the Italian operators that they thought they'd found, and I think we talked about this on space notes. They thought they'd found a seasonal variation in the flux of what might be dark matter. But that's not been replicated anywhere else. I think that was one of the reasons why the store facility was initiated down in Victoria in order to check whether this is real, the story that's coming from Italy. Unfortunately, I can't read anymore in my table because I've got these exacts across the field of view. Is you're interested in their own right? But I think that's the bottom line there. Yeah, I think they're saying, look, it could be the odds of it being a dark

matter discovery 0.5 percent, I think they're claiming. Yes, that's right. Isn't that the old study? It's not real. I can't remember which one. What are they saying? I need to look at that again. I'm trying to find it now. We think in terms of sigma, the number of standard deviations, this doesn't, I think five sigma is the normal acceptance for a fact. I don't think is anywhere near that, but I think it's still got quite a high level of probability attached to it. And just to clarify, I'm sorry, what I said was just a bit misleading. 248 kilo electron volts is actually a recoil. That's a recoil of a particle. And so they can deduce from that that it would be at least 200 giga electron volts that your dark matter particle would have to work out. That's quite interesting. I found it. The term

reached what is known as 2.6 sigma, a 0.5 percent chance that the event could be explained by known backgrounds. And that is still below a five sigma threshold needed to confirm a discovery. So there you go. It's more complicated than what I thought. Yeah, but it's intriguing. This could just be the first chunk in new physics that we've been looking for that might give us an explanation for what dark matter is. Indeed. They publish their findings in the archive. It is yet to be peer reviewed, but I'm sure it will be. It'll be reviewed to death, you can believe. Yes, absolutely. Yeah. You can also read about it on the ABC science website. Yes. This is Space Nuts, Andrew Duncan Lee here with Professor Fred Watson. Toyota's easy choice sales event is on whether you're looking for the performance

of a camera, the versatility of a RAV4, the efficiency of a Corolla or all electric driving in the BZ. There's a Toyota that's just right for you. And with great deals across the lineup, now's the time to find yours. But hurry, these deals won't last long. Toyota's easy choice sales event and soon. We make it easy. Toyota, let's go places. The meal and save your favorite is now your wallet's favorite too. Extra value meals are back. Sun rises, prices fall. Get a sausage McMuffin with egg or sausage egg and cheese

Macrittles, small hot coffee and hash frowns for just six dollars. Price and participation may vary. Promotion pricing may be lower than meal pricing. But uh, but but but. We've been, uh, equality-based. The Eagle has landed. Space Nuts. This story, Fred, I love because it involves an outback astronomer. It is a new decagon that's been discovered on satin around its south pole. And Trevor Barry has made the news at a broken hill in outback New South Wales because he was a part of this find. Absolutely. Trevor's an old friend. Trevor and I go back to the mid 1990s when he first visited me at Siding Springs Observatory and we hit it off and we've been in touch ever since. Um, he, uh, let's just do the Trevor bid of the story um, because this is certainly, you know, a double-barreled story here. Uh, he, um, discovered astronomy when he was a, he wasn't a minor. He was a mine worker in the, I think he was a fitter

actually in the, in the mines in broken hill. Uh, and um, one of these colleagues built a telescope to try to look through it and the planet saturn. And there's been hooked ever since. Yeah. Um, and built a succession of telescopes which are impressive. I've seen the one that he uses currently. It's a 400 millimeter telescope homemade. Some of its components came from an old washing machine. It's great stuff. It's kind of, you know, the absolute, um, essence in a way of good amateur astronomy. But, but with that telescope, he observes saturn. I think actually, it's not just saturn. He checks out other giant planets as well. But saturn is certainly his, uh, area of speciality. And he, and he checks it out every clear night. And that was why he got caught to down to the Cassini team. Uh, back in the early 2000s with Caroline Porco, the, uh, the image scientist of Cassini. Um, Trevor was the one that said, uh, there's a storm in, you know,

saturns northern hemisphere. You might want to take a look at it with Cassini because, of course, the Cassini spacecraft didn't have the global view of saturn. It just had its instruments that could be pointed in any direction. Uh, whereas Trevor with his telescope could see where the activity was and he was the guide. Uh, so of course, he received lots of honors from that. Uh, I know he has spent a lot of time, uh, studying the North Polar Hexagon of saturn. And that's a feature that, uh, was discovered actually by the Voyager spacecraft back in the 1980s, but was, uh, analyzed deeply by the Cassini mission. So this is a, it's a jet stream. Uh, it is a very, very regular Hexagon. Uh, it almost looks as though there should be a spanner somewhere nearby because it's that shape. Yeah. Um, and it's, it is formed by, it's basically a six-peaked wave that's formed

in a circle. Uh, but it looks like a Hexagon. Uh, you won't be able to take a spanner to it because each side of the Hexagon is 2000 kilometers bigger than the diameter of the earth. Uh, so this is large. Now Trevor has studied the Hexagon in great detail, but of course, one of the, and he's got papers with his colleagues from NASA and elsewhere with that. One of the, um, things that has puzzled astronomy, excuse me, astronomers is, um, why isn't the one in the South Pole? Why isn't there a Hexagon or something like it near the, the Southern Polar region? And so that is something Trevor has long kept an eye on working with his colleagues. Um, one of whom is actually in Spain. We were very close to where his colleague Augustine works. We were very close to where it is, about a month ago when we're there for the eclipse. Um, the, the bottom line is that within the last three years, they've started seeing evidence of something fishy going on, which has now been

followed up by the Hubble telescope. And what has been revealed is not a Hexagon, but a Decagon, a ten-sided, uh, figure around the South Pole of Saturn and the big difference between that and the Hexagon. We don't know how all the Hexagon is. We don't know how long it's been there, but we do know that this Decagon has only been there since 2023. It's probably still in the process of formation. Um, and so this is the result of the, the, um, announcement that's been made in this paper within the last couple of weeks in science advances. Trevor is absolutely over the moon. He sent me an email when the paper was released. Um, he could tell it was bursting with delight as to what's happened. He's had, um, as always, when Trevor makes a discovery because he's the, you know, the astronomer of Broken Hill, he gets a lot of media coverage and quite rightly too. This year saw the publication of a book on his life out back astronomer, which is a very nice book, uh, I was privileged to write the forward for it. Um, so it's one to look out for if

you're interested in following Trevor's career. Yeah. More especially though, if you're interested in following the Decagon, there's really good news. And that is that at the moment Saturn, where it is in its orbit, it's moving towards the Southern, Summer Solstice, which means that the South polar region of, um, of Saturn is tilted towards the inner solar system, in other words, towards us. Yep. Uh, and so the, the solstice is, I think it's April, 2020, 2032. So between now and then we'll get better and better views of this Decagon, assuming it lasts. I mean, it could be something that is so temporary, it just collapses, but it's definitely there. Uh, it's easy to find, um, pictures of it for our listeners who might want to chase it up on the web. Um, it's, um, yeah, so a great discovery with a lovely backstory as well concerning somebody who's, uh, I think very special in the world of astronomy. Uh, even right down to his corrugated iron clad observatory.

That's right. Absolutely. It's got all the bells and whistles. I've got to, I think I remember, I need to check it, you know, back astronomer. One of his telescopes is called Fred. Um, and um, he's, he's made it into an acronym, but he's, he's, um, he's done with the owner of naming his telescope. Yeah. Yeah. There's a fabulous story on the ABC about him. If you want to look it up, uh, should be easy to find, just do a search for Trevor Barry, uh, ABC and, uh, it'll pop up. Um, you can read the published paper in the journal science advances, but, uh, he had great story, great local connection and congratulations to Trevor and everybody involved. And I forgot to say thank you to Casey for, um, sending us that, uh, first story about Luxe Zeppelin. This is Space Nuts, the podcast and the radio show on, uh, community radio across Australia with Andrew Duncley and Fred Watson.

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instructions. Oh, I had a question. Our host replied super quick. Premier move. Wish I had a Premier group chat. They won't even write me back. Book a top-rated stay with a Premier host. If you know, give Verbo. Zero K and I feel fine. Space Muts. Now, we've got a double bunga story here because they're of a similar ilk in very different parts of the solar system and the first part of this story involves China and they're getting right down to the nuts and bolts nothing to do with Saturn's south pole. But right down to the nuts and bolts of finding somewhere to land on Mars for a sample return mission looking for ancient life. This is very exciting. It is. And I think this is going to, I think it's something that's going to not go unnoticed in the in the halls of NASA. Because of course, NASA has perseverance on the surface of Mars at the moment, which has gathered up all these samples of soil and dirt from the

surface of Mars. It's more than 20 samples, I think they've got now, which have been left in little containers with the idea of picking them up to bring them back to Earth for analysis on our planet. But at the moment, there's no mission plan to do that. No, just let them lying around like a dog would do. Yeah, exactly. Whereas China, they're planning a mission that will actually do it all, basically, it'll have a lander on the surface with a rover which will scout around. I've got a feeling there's a drone involved as well. It's going to check out good sites. It'll drill. And I think the drill goes, the idea is to go down up to two meters, which is actually what Aces, X, O Mars, rover is planning to do. Grab samples and then send them

back to Earth more or less immediately. And so this is, it's, you know, if that happens before we get the persevere and samples back, I think a lot of people are going to be miffed about that. What will be even more spectacular will be if there were sides of past life among the TN-23 Mars sample returns. So it's an exciting project. I think 2028 is when the launch is going to take place. Two spacecraft will actually be launched. There'll be two launch vehicles. One I think for the lander and rover one for the orbiter and the return spacecraft. So as you said, quite right, they had 86 candidates sites originally. They've narrowed it down to a dozen. Is that right? I think it was 12 years. Yeah. Yeah. And they're all in, I think, a similar part of Mars' equatorial region. Places where we know that there are clays, and of course,

clays are minerals that were formed in water. And they are good at preserving organic molecules. Maybe give us more of a chance of finding evidence of past life there, you know, DNA evidence or something of that sort. Yeah. So this is exciting news. And I think it's, you know, it's tough to China's national space administration for the plans that they're carrying out. Yes, indeed. It's the TN-23 mission because they've already done it twice in the past, landing things on Mars. But I do believe there is a copter involved. You can see that in the story there. I just can't find any reference to it. But I think they've got a, yeah, it looks like does ground tracking from the sky. But a little drone. Yeah. No, we know drones work on Mars. They do.

Fantastic. And they will be launching this probably in 2028. Is that right? Like 2028. Yeah. And two separate long march five rockets. And so we may have answers in the not too distant future. All things being equal, which is fantastic. We wish them well with the mission. There is a similar mission, speaking of NASA, which is headed to Titan. They're looking at a 2028 launch as well. And they're off to Titan and they should get there in 2034 if they don't forget to pay their tolls along the way. This mission is the Dragonfly mission. I think we have mentioned it before. But it's getting ever closer. And they're really getting to the point he earned by this animal. That's right. So the announcement is very similar. We've, you know,

coming from the Dragonfly team, they've basically decided where they are going to land on Titan. It is an area called Amaki Kunde, which is a region of dunes. And dunes are, these are probably dunes of ice, actually, ice particles rather than sand. But there's a crater called the Selk crater, this dunes region is to the south of. They think it is a really interesting geologically productive region. And the idea is to give the drone, you know, as much of a variety of landscape as possible to check out. This is the Dragonfly drone. I think it's an octocopter, if I remember rightly. So I think there's this sort of range of hills, mountains at the edge of this region.

And so that's the plan to go there with a 3.3 year primary mission. And as I'm reading a little blog post here about what is going to be done with Dragonfly comes from Leonard David. It's once Dragonfly reaches Titan, the Rotacraft will conduct a 3.3 year primary mission, exploring diverse environments from organic dunes to deposits associated with Selk crater, a place where liquid water and complex organic materials key to life once existed together. Remembering, of course, that the surface of Titan is at about minus 190 degrees Celsius. How is something made on Earth like the Dragonfly spacecraft and more particularly the equipment they're going to put down at Selk crater or that area going to survive that long in such a hostile environment? It's not a nice place. No, not really. No, it's got quite high atmospheric pressure,

so that'll make the drone easier to fly. That's one of the challenges with Mars, of course, flying the helicopter on Mars was the fact that it's Mars has atmospheric pressure less than 1% of the Earth. So, ingenuity, the helicopter had to have big wings. Perhaps the drone, the Dragonfly drone won't need quite as much. Really interesting project though, and one that we will continue to watch with interest, Andrew. We will. Yeah, and both those missions coming up very, very soon. So, we're only a few years away from getting that sort of thing. Maybe potential answers to some of those great questions that we've been asking for decades and decades, yes, indeed. You can read that story on the website, LeonardDavid.com. Before we finish up Fred, I just wanted to sort of do some shouting out. We've got a listener that refers to him or herself as the web pro in Chile listening to us

or watching us on YouTube live today. And hello to Emily. This is, she says, watching us as cool. I think it's very cool. She's listening from an offshore oil rig, oil and gas rig in the Indian Ocean off the coast of Western Australia. So, hi, Emily. We were on a ship crossing that area a bit over a year ago. So, yeah, it's lovely to have you listening along and everybody who's watching actually on our YouTube channel. We are done, Fred. Thank you so much. I took pleasure. Always good. And thanks, Andrew, for putting up with my discussions about me, great. Oh, no, I'm glad you brought it up because I actually learned something. I'm delighted to tell you it's now cleared completely. That's exactly how I remember them. They just sort of go away. It's weird. All right. See you soon, Fred. Thank you. Professor Fred, what's an astronomer? Large, don't forget to visit us online at our website, space nuts podcast.com or space nuts. I

owe have a look around while you're there. Maybe leave some reviews wherever you listen to us. Reviews are very helpful to get our numbers up. I don't know what the numbers are for or what they do, but pretty, pretty important, apparently, according to Hugh. And thanks to Hugh in the studio, who couldn't be with us today because he did a sample return and they put him in hospital. From me, Andrew, thank you. Thanks for your company. We'll see you on the next episode of Space Nuts. Bye-bye.

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