11 Comments

git_rancherAug 26, 2026
A few hundred thousand dollars worth of tech replacing what used to be a massive industrial investment is amazing. And I thought enriching uranium is something that counties with nukes go to extreme lengths to make it not accessible.
john_strinlaiAug 26, 2026
>And I thought enriching uranium is something that counties with nukes go to extreme lengths to make it not accessible.

low-enrichment (~20%) is what's happening here.

the bad stuff, for nukes, is ~90% enrichment.

HPsquaredAug 26, 2026
It's the same process either way, and the first few percent are the hardest (as it's super dilute so you need to handle a lot of material). It's much easier to go from 20% to 90%, than it is to get to 20%.

https://en.wikipedia.org/wiki/Separative_work_units

dopa42365Aug 26, 2026
5% enrichment (regular reactor grade) is 2/3 the way to weapons grade already.

https://world-nuclear.org/information-library/nuclear-fuel-c...

Hence there technically being no enrichment cap for any country that signed the NPT and stuff (not to be confused with protection from US bombs or rogue states that never signed the NPT).

Legend2440Aug 26, 2026
>And I thought enriching uranium is something that counties with nukes go to extreme lengths to make it not accessible.

It's not that difficult from an engineering perspective, the tech is almost a century old. It's just that we will drop bombs on anyone who tries.

Nuclear nonproliferation relies on active enforcement.

colechristensenAug 26, 2026
It's not difficult from a conceptual engineering perspective but it is difficult from an industrial scale perspective. It requires a tremendous amount of hardware and energy and precision equipment.
KennyBlankenAug 26, 2026
Nuclear nonproliferation relies on surveillance/monitoring and statecraft.

There are many, many steps before "drop bombs".

yubblegumAug 26, 2026
> It's just that we will drop bombs on anyone who tries.

I don't recall us bombing Pakistan, India, Israel, China, or North Korea.

> Nuclear nonproliferation relies on active enforcement.

The comedy hour at HN has arrived. See above ^^^

bawolffAug 27, 2026
>I don't recall us bombing...China

As far as i know, USA was seriously considering doing this in 1964. However the soviets said that would mean war, so they didn't.

North Korea is so firmly in China and Russia's sphere of influence that bombing them would be hard, especially given how much conventional weapons they have pointed at south korea. That said, would you really want to be north korea? economic warfare has done a number on them. in many ways they are the poster child for nuke != winning.

Israel probably snuck through by doing it early enough and secretively enough that it was fait accompli. They probably tested their nukes before the nuclear non proliferation treaty was even signed.

so really you have india and pakistan. The fact there are so few exceptions kind of proves the system works.

> Nuclear nonproliferation relies on active enforcement.

It relies on getting nukes being an irrational move for most countries. Yes part of that is your enemies will start preventive wars to stop that. A very major part of it is the economic consequences of developing nukes is usually not worth it. Part of it is the smart strategy is to just do most of the work and stop before getting nukes - if shit hits the fan you can get nukes quickly, but going up to the line without crossing it has none of the negative consequences.

scheme271Aug 27, 2026
North Korea isn't doing so well, but it's doing better than Iraq, Libya, or Venezuela at least as far as the leadership is concerned. Their conventional forces being within artillery range of Seoul probably helps but having multiple credible nukes really has helped them to avoid being a target of regime change.
NuclearPMAug 27, 2026
You argued against your own point beautifully.
jjk166Aug 26, 2026
It's actually the opposite. Centrifuges are a cheaper and easier enrichment method. A single uranium centrifuge is on the order of $10,000 to $20,000. It's economical to run lots of centrifuges, but you could in theory get up to high enrichment just using the same centrifuge again and again.

Lot's of non-nuclear weapons states do have access, the Netherlands for example enriches more uranium annually than the UK. It's the components of centrifuges that are tightly controlled. Building enrichment facilities is well within the capabilities of pretty much any nation state, it's doing it secretly which is the hard part.

This alternative technique only makes sense at extremely small quantities. For their primary market of making medical isotopes, it makes a lot of sense. For nuclear reactor fuel it's incredibly impractical.

datakanAug 26, 2026
So will we start bombing Dallas now?
lotsofpulpAug 26, 2026
Might make it more walkable.
chasd00Aug 26, 2026
hah probably help cool things off too.
theredleftAug 26, 2026
Hegseth is on it
cickoAug 26, 2026
No. Economic sanctions are in right now. Maybe tomorrow.
doodlebuggingAug 26, 2026
If they do I hope they leave Deep Elum alone. Some nice venues there for local, regional, and much more well-known bands. Also a few good restaurants in the area.
fodkodraszAug 26, 2026
So this is basically a calutron... a huge mass spectrometer. 1940s technology, upgraded with state-of-the-now control systems, and electromagnets. A formidable engineering work, but more of a breakthrough from legislation and compliance perspective possibly.

https://en.wikipedia.org/wiki/Calutron

bpodgurskyAug 26, 2026
That's fine
fodkodraszAug 26, 2026
Totally agree, just summarized what I found in the press release. Even boring engineering is honest work, and this is not boring, even if not cutting edge in my understanding. Nuclear operations have their special challenges which need special care, also from engineering side. Still I think this is less of an engineering news.

Anyways, I didn't mean to downplay it.

jablAug 26, 2026
IIRC Calutron's were basically abandoned because they were massively inefficient compared to gaseous diffusion and, particularly, centrifuges.

What has changed here to make them competitive again? Or are they counting on selling small quantities at close to any cost for R&D reactors?

Speaking of which, whatever happened to laser enrichment? That was apparently very promising at some point?

piyhAug 26, 2026
>Under the Atomic Energy Act, all information not specifically declassified is classified as Restricted Data, whether it is privately or publicly held

https://en.wikipedia.org/wiki/Separation_of_isotopes_by_lase...

Legend2440Aug 26, 2026
They talk about that in the article:

>"A centrifuge plant does one thing, costs billions, and takes years to stand up. Our machines cost a few hundred thousand dollars, produce material within months, deploy anywhere, and are able to be reconfigured in a matter of days to separate various isotopes as they are needed," said Robert Mendelsohn, co-founder and CTO of Actinide.

ta988Aug 26, 2026
yeah they don't talk about cleaning them either... that's a massive problem in this kind of ion separation techniques, things splatter and stick everywhere.
amlutoAug 27, 2026
The obvious thing to consider is throughput and yield/loss. A centrifuge plant can produce kilograms of material and doesn’t fundamentally misplace any material, although it may struggle to extract all the inputs that are the correct isotope. A calutron needs to ionize every single atom, accelerate it to an appropriate energy, deflect it, and decelerate it without losing it. And it needs to deal with inadvertently multiply-charged ions. And if you’re dealing with radioactive source material, you need to deal with the atoms that embed themselves in your apparatus.

At least uranium isn’t actually all that radioactive.

pclmulqdqAug 27, 2026
This is a bit uncharitable to the concept of a centrifuge here. The Iranian nuclear program seems to have centrifuges that are a lot smaller and cheaper, and you can certainly build one that meets these needs.
scytheAug 26, 2026
Well, for one thing, the only existing Yb-176 production facilities are in Russia. That means demand for a domestic supply is pretty high right now.

The other thing is that for a nuclear reactor, you need many kilograms of uranium. But for a Pluvicto patient, you need less than a gram of ytterbium.

p1mrxAug 26, 2026
Take these numbers with a grain of salt because I got them by chatting with AIs, but if you're producing electricity from HALEU, then centrifuges require reinvesting <1% of the output, whereas historical calutrons required 200% (useless) and modern technology could potentially bring that down to 10%.

So calutrons will always be less energy efficient than centrifuges, but if the capital cost and construction time is low enough, calutrons might still be economically viable.

KennyBlankenAug 26, 2026
If we wanted to find out what an LLM thought we'd ask the LLM. Don't be a meat proxy.

https://gruhn.me/blog/2026-08-03/

tmp10423288442Aug 26, 2026
But you weren't going to ask the LLM, and now you know something you weren't aware of. Seems no different than someone reporting what they found out in a Google Search, as long as they disclose that they used an LLM (as long as they used one that actually searches the web, but pretty sure even ChatGPT Free does that these days).
ben_wAug 26, 2026
> but pretty sure even ChatGPT Free does that these days).

It can do, but won't do so reliably; and the guessing it does if it's not grounding with a search is still like someone in a pub saying "I recon…". Admittedly, a Cambridge pub like the Carlton Arms used to be when I lived there (sometimes I'd be the only one at the table who wasn't studying for a PhD), but still, pub.

cwilluAug 27, 2026
One of the more annoying pre-llm behaviours was responding with the first link of google when a question was asked (but not of them specifically).
p1mrxAug 26, 2026
Even if you ignore my LLM numbers, "what percent of a reactor's output must be reinvested to enrich its own fuel?" is a meaningful contribution to the discussion.
fc417fc802Aug 27, 2026
But are your numbers reliable? By your own admission you don't know. So you aren't contributing expertise but rather the brief use of a tool that everyone has ready access to and which doesn't necessarily return reliable answers. AKA noise, at least from the perspective of a community like HN.
Refreeze5224Aug 27, 2026
This site is intended to be a discussion between people. If we wanted to consult some other resource, we would go do that. Injecting unverified information is not a contribution to a discussion between people, especially if it isn't coming from a human source.
woahAug 26, 2026
Are you a meat proxy for that blog post?
jjk166Aug 26, 2026
> What has changed here to make them competitive again?

Nothing. This is a company that specializes in making medical isotopes, which is something Calutrons are good for - you need high levels of enrichment in a single step, you don't need to process large quantities, and the energy consumption doesn't matter. Any talk of using it for reactor fuel production is pure PR spin.

AnimatsAug 27, 2026
> What has changed here to make them competitive again?

The article has to be read carefully. "On Actinide's engineering estimates, a single Fortitude machine would provide roughly half the isotope-separation capacity of the U.S. government's current electromagnetic fleet."

The "U.S. government's current electromagnetic fleet" is tiny. Oak Ridge is building a modest plant.[1] Idaho has a benchtop-sized separator. That's what Actinide is comparing against. Not the rows of basketball court sized calutrons from WWII. So the announcement gives the impression of a larger operation than it really is.

> Speaking of which, whatever happened to laser enrichment? That was apparently very promising at some point?

That is a very good question. A company called Silex, and their subsidiary Global Laser Enrichment, has been trying to commercialize this for years.[3][4] Exactly how they do this is classified.[5]

There's another startup in this area, crawling along, underfunded, but building something.[6]

Meanwhile, URENCO continues to operate a centrifuge plant in New Mexico.[7] URENCO is a a European company, and seems to be the leader in centifuge technology. Units in France, Germany, the Netherlands, and the US.

I've been expecting something big to happen in the laser enrichment area since the 1990s, but it never has. This suggest that it either doesn't work very well or is being suppressed because it works too well.

[1] https://www.energy.gov/science/articles/doe-expands-stable-i...

[2] https://inldigitallibrary.inl.gov/content/uploads/50/2026/04...

[3] https://www.silex.com.au/

[4] https://www.gle-us.com/

[5] https://www.nrc.gov/docs/ML2304/ML23045A117.pdf

[6] https://laseristech.com/

[7] https://urencousa.com/

browsingonlyAug 27, 2026
A friend of mine was involved with AVLIS and Pu-AVLIS. There were/are significant counterproliferation concerns with them. I'm not sure if that has anything to do with the lack of major commercialization, but I wouldn't find it shocking if it were true. As I understand it, it's one of those technologies that the US doesn't strictly need, but we really don't want the Iranians (or similar weapons-pursuing state) to have it.
shevy-javaAug 26, 2026
But mass spectrometers don't use uranium.
ta988Aug 26, 2026
they can absolutely see uranium. It ionizes and thus get separated like many other things https://pmc.ncbi.nlm.nih.gov/articles/PMC7470433/

Calutrons are using the same principle of separating ions by their mass/charge ratio, just in a preparative scale (you want to collect what is separated) rather than analytical (you just want to know how much of what).

numpad0Aug 26, 2026
sounds like this is similar to doing basic paper chromatography and cutting out the strip with scissors just to get the desired substance, spectrometry as means to produce the material rather than means to analyze
colechristensenAug 26, 2026
Mass spec is about separating things by mass... exactly what enrichment requires.

A mass spec used as an instrument measures the components of a substance, this is just the same concept for actual separation of components not just to look at them

trhwayAug 27, 2026
>1940s technology

yes, i'd have expected that laser enrichment would be more preferable technology for modern development

josefritzishereAug 26, 2026
I have a bad feeling.
futura_heavyAug 26, 2026
Is it the menacing guys in the photo, or that headache-inducing logo?
jmward01Aug 26, 2026
The logo. Definitely the logo. It both sucks you in and repels you at the same time. 'eye catching' to say the least, but so are laser pointers.
peri-clAug 26, 2026
> "Actinide’s flagship commercial product: enriched ytterbium-176,"

To save HN a search: a stable isotope used as a neutron capture target, to produce lutetium-177[i], used in targeted radioligand therapies[ii]. Discussed once on HN[iii].

[i] https://isotopes.gov/Ytterbium-176_is_Available_Now

[ii] https://en.wikipedia.org/wiki/Lutetium_(177Lu)_vipivotide_te...

[iii] https://news.ycombinator.com/item?id=40690196 ("Radioactive drugs strike cancer with precision (knowablemagazine.org)")

shevy-javaAug 26, 2026
They are killing the environment now. I remember this discussion some 25 or 30 years ago in serbia, e. g. depleted uranium. Well, guess some company always wants to find ways for dumping or lifting-up radioactive substance.
ortusduxAug 26, 2026
I've been following SuperCritical, a new startup working on Uranium extraction from sea water. My understanding is that the process is much more sustainable than mining, which makes it easier/faster to establish a domestic source vs the permits needed for a new US based mine.

https://www.globenewswire.com/news-release/2026/08/26/335139...

uygiugiuAug 26, 2026
General Matter is also working on HALEU https://en.wikipedia.org/wiki/General_Matter
doodlebuggingAug 26, 2026
Investors groups include: Neo Ventures - SE European VC group with mostly Bulgarian leadership and a diverse portfolio that doesn't mention Actinide at all; Mana Ventures - one of their companies is Flock Safety, the ubiquitous surveillance company in the recent news; Discipulus Ventures - MAGA supporting religious nutjobs from their own description in their opening paragraph [0], and from Forbes (paywalled) [1];

[0] https://www.discipulusventures.com/ [1] https://www.forbes.com/sites/davidjeans/2025/02/10/silicon-v... (paywall)

Interesting revival of or use of old technology to accomplish their goal. I'm not sure this belongs as a private tech company. I feel like it should be under the control of the federal government and no, I don't care what the libertarians on HN think about it. This needs to be a regulated company and process with clear reporting responsibilities and permanently disruptive penalties for noncompliance by individuals and the corporation.

chuckadamsAug 26, 2026
You can bet your sweet patootie that even under the current government, any company producing radioactive isotopes is not operating without regulation or supervision.
gfalcaoAug 26, 2026
wow
netikAug 26, 2026
This is highly dangerous, right? If a bad actor possess centrifuge technology and can divert this <20% enriched uranium, they are essentially days or weeks away from achieving weapons-grade material.

This severely reduces the "breakout time" the international community relies on to detect and stop nuclear proliferation.

AngryDataAug 27, 2026
Centrifuge and nuclear technology is not some latest and greatest super complicated and barely understood technology with hard to source components anymore. Old restrictions like ball bearings quality on export and such are basically meaningless today. You can buy common tooling today from China that would trounce anything people were using 60 years ago and nobody has stopped people from studying and researching nuclear technologies.

It is mostly a matter of money and international politics now. It takes a significant amount of money to build and power, and it is hard to hide the scale of building and power usage from international watchdogs. Because nothing consumes tons of energy and doesn't output tons of product to sell except for nuclear material refinement for weapons.

jjk166Aug 27, 2026
> it is hard to hide the scale of building and power usage from international watchdogs. Because nothing consumes tons of energy and doesn't output tons of product to sell except for nuclear material refinement for weapons.

Until datacenters

jjk166Aug 27, 2026
If the bad actor has centrifuge technology and access to low enriched uranium, they are already weeks away from achieving weapons grade material. If a country with Iran's enrichment capabilities had a sufficient LEU stockpile swapped for an equivalent amount of HALEU, it would shave about 7 days off the time necessary to produce a bomb's worth of weapons grade uranium.

For nations with enrichment capabilities, enrichment is not a major contributor to overall breakout time. Enrichment doesn't take much time, it's building enrichment facilities that takes a while, especially clandestinely.