This proves once again what could happen if one is not to follow the herd.
He knew it would work 50 years ago.
I imagine there are ideas being discussed today that will come to fruition 50 years from now.
... or 30 years. Our choice.
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This proves once again what could happen if one is not to follow the herd.
He knew it would work 50 years ago.
I imagine there are ideas being discussed today that will come to fruition 50 years from now.
... or 30 years. Our choice.
Earlier quoted context omitted.
Check the publications page for the encouraging part. They might be wrong but they're doing real science. I've personally spoken to a fusion scientist who thought they might be on to something. Exponential progress does sometimes have results that seem too good to be true. In this case the progress has been in picosecond lasers, which for a while have been getting ten times more powerful every three years or so. What…
Thanks to yourself and randallsquared below for your responses - I'd since posting read the following Abstract by the authors, which hinted that the underlying science was viable: https://www.cambridge.org/core/journals/laser-and-particle-b... , however my only awareness of existing 'laser fusion facilities' was the American National Ignition Facility ( https://en.wikipedia.org/wiki/National_Ignition_Facility ) , whi…
[0] https://www.hb11.energy/news-and-publications [1] https://aca3d9dd-3b9c-446b-8797-0ba1cdb49ccb.filesusr.com/ug...
"The hydrogen/boron fusion creates a couple of helium atoms," he continues. "They're naked heliums, they don't have electrons, so they have a positive charge. We just have to collect that charge. Essentially, the lack of electrons is a product of the reaction and it directly creates the current."
This seems.. too good to be true? I don't have the Physics chops to untangle the likelihood of this tech and the credibility of the process and its authors, so I'm hoping the HN crowd will be able to pad out the story behind this. Certainly, from my layperson's perspective, their website isn't exactly encouraging... https://www.hb11.energy/ - ed re: last line - "books and covers, and all that"
The big problem with H-B11 and other heavier fusion processes is that the energy radiated away as brehmsstrahlung is greater that the energy gain from the fusion. This was worked out by Todd Rider in his 1995 PhD thesis. Yeah, in theory it might be possible to capture the brehmsstrahlung and pump it back into the reactor with sufficiently high efficiency, but we're pretty far away from that. That being said, all thes…
Google polywell the US military has been funding this for the past 20 years. There are some issues that might be solved with scaling the device. A company called emc2 was spun off this US military project.
The primary problem for fission is state regulation and large cost even if you didn't have to pass regulation. And most fusion concepts can't really address that much better.
Directly creating current rather then having a whole heat to electricity transformation might allow the whole thing to be much cheaper.
Surface of the Sun - 6000 C
Center of the Sun - 15000000 C
Can someone explain why this is considered fusion? The reaction involves shooting a proton (hydrogen) at a boron nuclei and outputting 3 alpha particles. That seems more like the nuclei being split apart than fused together.
Can someone explain why this is considered fusion? The reaction involves shooting a proton (hydrogen) at a boron nuclei and outputting 3 alpha particles. That seems more like the nuclei being split apart than fused together.
The explanation I've heard from a fusion scientist is that as far as they're concerned, if you're initiating the reaction by colliding nuclei, it's fusion, and if you're initiating it by hitting a large nucleus with a neutron, it's fission.