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16 votes
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The brightest gamma-ray burst ever recorded rattled Earth's atmosphere
18 votes -
Something weird happens when you keep squeezing
19 votes -
Unzicker's "Real Physics": on dangers of Youtube physicists
12 votes -
The insane engineering of the F-16
11 votes -
Earth is hiding another planet deep inside
24 votes -
Why the empty atom picture misunderstands quantum theory
22 votes -
All objects and some questions
4 votes -
The mathematician who sculpted the shape of space - obituary for Eugenio Calabi
13 votes -
UK's nuclear fusion site (JET) ends experiments after forty years
18 votes -
Attosecond lasers explained (2023 Nobel Prize in physics)
6 votes -
2023 Nobel Prize – This year's Nobel Prize announcements will take place between 2nd - 9th October 2023
22 votes -
Quantum Computing Since Democritus
7 votes -
Physicists who explored tiny glimpses of time win Nobel Prize
23 votes -
ALPHA experiment at CERN observes the influence of gravity on antimatter
24 votes -
The plot of all objects in the universe
10 votes -
This "perpetual motion" device is really clever
18 votes -
The physics of tossing fried rice
23 votes -
Why are adverts so loud?
17 votes -
Searching for dark matter with the world's most sensitive radio
8 votes -
The golf ball paradox
11 votes -
Should airships make a comeback?
25 votes -
How far can you jump from a swing?
15 votes -
What does any of this have to do with physics?
41 votes -
XRISM will be launching Sunday, Aug 27 at 8:26pm, EDT (Aug 28, 0:26:22 UTC)
6 votes -
How a Harvard professor became the world’s leading alien hunter
12 votes -
To predict future sea level rise, we need accurate maps of the world's most remote fjords in Greenland and Antarctica
8 votes -
National Ignition Facility fusion societal energy hype
19 votes -
US scientists repeat fusion ignition breakthrough for 2nd time
80 votes -
Muon g-2 doubles down with latest measurement, explores uncharted territory in search of new physics
21 votes -
Wobbling muon experiment could reveal a fifth force of nature — if the results hold up
20 votes -
Butterfly-inspired films create vibrant colors while passively cooling objects
9 votes -
Pay dirt for ice core scientists in East Greenland as they reach bedrock
24 votes -
The blue flash: How a careless slip led to a fatal accident in the Manhattan Project
43 votes -
Faced with scrap material inside a particle accelerator, physicists used a ferret to try to solve the problem
32 votes -
Researchers find ancient high-energy impacts could have fueled Venus’s volcanism
12 votes -
When Greenland was green: Ancient soil from beneath a mile of ice offers warnings for the future
16 votes -
Why Oppenheimer deserves his own movie
14 votes -
How quantum physicists explained Earth’s oscillating weather patterns
6 votes -
Citizen science observation of a gamma-ray glow associated with the initiation of a lightning flash
5 votes -
Scandium superconducts at the highest temperature for a pure element
5 votes -
Nuclear fusion discussion
I'm a big fan of nuclear fusion as a concept and hope to shift toward doing active research in the field at some point. I'd like to open this discussion to talk about topics regarding nuclear...
I'm a big fan of nuclear fusion as a concept and hope to shift toward doing active research in the field at some point.
I'd like to open this discussion to talk about topics regarding nuclear fusion as a future energy source. To start, I'll lost a couple of ongoing fusion efforts I'm familiar with.
ITER:Of course the biggest fusion project is ITER, the massive multinational collaboration which is building a massive tokamak reactor in France. Unfortunately ITER will never produce power for average people, as it's purely a test reactor with no plans to be connected to the grid. The following effort to build a functional grid connected reactor, DEMO, isn't set to be built until at least 2050. This has resulted in a considerable number of private ventures trying iut experimental alternative approaches.
HELION:At the time of writing this, there's quite a bit of buzz surrounding Helion energy, both because of the ambitious timeline theyve recently proposed as well as the investment of Sam Altman of OpenAI fame. Helion uses an FRC topology, which I personally think is a really cool idea. Basically it's a tokamak without the physical shell around it, and is kept sustained by the internal plasma physics. Helion also has another interesting quirk, they are not pursuing the typical DT fuel strategy, but are instead planning to use DD fusion to breed He3 and use DHe3 fusion as the primary energy source. I think this is a good idea because DHe3 fusion is "aneutronic", whereas DT fusion produces high energy neutrons that are somewhat of an unsolved problem to deal with. I wonder though, how they intend to deal with the inevitable tritium pollution that DD fusion creates, and how they will separate that out before Iit creates neutrons anyway.
TRIALPHA:In addition, another major company TriAlpha Energy, also pursued FRCs, hoping to use an alternative proton-boron11 mix to achieve aneutronic operation. I think they've sort of pivoted toward being more a neutron source than working toward breakeven.
HB11: A recent proposed approach is HB11, which is also going for proton-boron fusion. Now with Tri Alpha this seemed really dubious, because hydrogen boron has a much lower cross section for fusion than other options, even the DHe3 that Helion is doing. In addition, boron has way more electrons than hydrogen, so a proton boron plasma has more electrons with causes more bremsstrahlung loss. HB11, however, thinks they can overcome this through high energy laser acceleration. They want to use a high power laser to shoot a fuel pellet into a target. This supposedly will work much better than heating the stuff, because the laser will impart a specific impulse and thus the thermal spectrum of the impact will have a much higher Q factor centered around the cross sectional peak. I'm not really convinced on this, just because I feel like that thermal spectrum would only last for the first few atomic layers of impact before it doesn't really matter amymore.
CFS: The next option I would consider to be one if the most popular fusion startups is Commonwealth Fusion Systems. They have what I'd consider the most conservative approach, they are attempting to build a Tokamak design like ITER, but hope to reduce the size considerably by taking advantage of advances in superconductor technology with REBCO tapes.
W7X:The next reactor type I'll mention was in the news a lot a few years back, the Wendelstein-7X in Germany. This is a stellarator design, the crazy twisted car wreck of a thing you may have seen before. The stellarator is shaped that way so that it doesn't require an induced current like the tokamak to have magnetic helicity, because the shape does that automatically.
ZAP:Another well liked dark horse is Zap Energy. They're not as flashy as the other reactors but seem to be working off solid physics that have been proven out over many years. They're trying to do sheared flow z-pinches, which is basically creating a lightning bolt that's perfectly straightened out and super dense.
DPF:One more somewhat obscure option is Eric Lerner's Dense Plasma Focus approach. I'm a little puzzled by this option because it seems to be the exact opposite of Zap, where they make an incredibly twisty lightning bolt instead of a straight one.
FUSOR/POLYWELL:There are a couple reactor types that get mentioned often but are more or less obsolete are the Fusor and the Polywell. A Fusor is a neat device that can be built to fit on a desktop and still produce actual fusion reactions, but has a fundamental design flaw of a physical electrode inside the plasma that introduces too much conductive heat loss. The Polywell is a more advanced concept thay tries to create a "virtual" cathode with orthogonal magnetic mirrors, but I think after many years of experimentation researchers were unable to validate the formation of such a virtual cathode.
NIF:One option that is sort of tangential is the NIF, which you might have heard technically produced more energy than it produced. I dont think its necessarily going to go anywhere, mostly because it's more a weapons program than an energy program, but I think the chirped pulse amplification technology they use is really cool.
GENERAL-FUSION:And finally I'd be remiss if I didn't mention the very highly funded and publicized General Fusion. I definitely give them points for pure childlike wonder. The original pitch was they were going to take a giant swirling tornado of molten metal, fire a ball of plasma into the eye of the storm, then smash the whole thing from all sides with a hundred giant hammers. To be honest is such a wild concept that I don't really know if it really makes any sense or if it's a fever dream. It's undergone a few revisions after finding out that certain parts of its concept just weren't going to work. This doesn't inspire a ton of confidence, but also shows flexibility in their thinking.
There's definitely lots of other companies with other variations, but this gives a general idea of the huge range of ideas and approaches being pursued. I think it's a really cool field to explore and I'd love to hear all your thoughts about it.
48 votes -
Guy makes an actual functioning camera inside of his Blender world
30 votes -
John Goodenough, part of Nobel trio in lithium battery hunt, dies at 100
12 votes -
A big gravitational wave announcement is coming thursday. Here's why we're excited
19 votes -
The $21,000,000,000 hole in Texas - The Superconducting Super Collider
28 votes -
This is what happens to an exposed body in space
11 votes -
The physics of dancing peanuts in beer
8 votes -
Photosynthesis, key to life on Earth, starts with a single photon
5 votes -
The spool paradox
4 votes