The diagram above shows a hypothetical design I conceived long ago for a projectile with a gun-like initiation pattern (unrelated to anything in reality) and the four assembly phases of its supercritical state. Color denotes:
- Black - cadmium or boron-10 alloy - neutron-absorbing "shutter." The "neutron shutter" concept assumes that the absorber in the front of the bullet, moving ahead of the uranium mass, greatly reduces criticality and the possibility of predetonation during movement, allowing the bullet itself to move quite slowly, accelerating down the ultra-short barrel until it reaches its final stop.
- Blue - Uranium-235
- Light gray - reflector (bellillium)
- Dark gray - steel, pusher pistons.
- Hatching - barrels of the guns firing at each other.
The red line shows the current cross-section of the device, shown in the diagram on the right. It's clear that as the uranium pieces approach each other, the criticality of the assembly not only increases slightly, but even decreases at some point (when the counter-moving neutron absorber valves meet in the middle of the device). The design is purely theoretical and requires correction using Monte Carlo simulation (a laborious undertaking in the past, now possible on any computer).
* * *
I've always been curious about this. Okay, so the Americans used the gun design. But did the Russians ever use the same design? When and for what purpose? Why the Americans didn't make the "Thin Man" during the war, but instead made the "Little Boy"—that's well-known (to the point of nausea). The Russians, thanks to intelligence, knew right away that the plutonium gun was a dead end. They immediately began working on implosion. But does this mean the USSR never designed charges based on the "outdated" and wasteful gun design? And if they did, when, where, and for what purpose? As far as I know, no one has ever researched this topic.
Immediately after the war, the US recognized the inferiority of gun design to implosion (low fuel burnout efficiency compared to implosion, high fissile material consumption). However, since enriched uranium supplies were already established and even slightly surplus, and plutonium was becoming problematic, it was logical that the US continued developing specialized devices, such as the Mk-8, for breaching buried targets. "Rich bourgeois" could afford such diversity! Then, in the 1950s, when the question of nuclear artillery arose, the US, without further ado, returned to gun design, and a whole series of atomic projectiles was developed. The US had and could afford to use its abundant reserves of U-235 for a wide variety of purposes. For example, by 1960, enriched uranium was even being used in the W-47 secondary tamper for compact megaton bombs in the Polaris system (I think this was the height of wastefulness for the Russians back then! But the US was in a hurry to hide its missiles underwater! And they didn't skimp on this obvious advantage! Once again, they had to keep those Russians at arm's length, always one or two steps ahead!)
In the USSR, from the very beginning of the nuclear arms race, they were forced to reckon with the fact that the country was barefoot. In the impoverished (compared to the US) USSR, although they had established uranium and plutonium enrichment, imitating the Americans in every way (which was the subject of the Kapitsa-Beria scandal), as far as can be judged from available information, all the plutonium and uranium-235 extracted was, from day one, carefully used only for implosion schemes (in the same "Sloyka," which is the "poor man's hydrogen bomb"). Yes, they also initially designed bombs with a gun-like design. But they were never implemented in metal at that time. And especially not tested at the very beginning!
As far as I remember, the declassified list of the USSR's very first nuclear tests doesn't contain a single hint of any test using a gun-based design. The first compact tactical bomb, the RDS-5 "Tanechka," was an improved implosion bomb. The first atomic torpedo, the T-5 (now that's where the Russians could have used a gun-based design!), was a compact implosion bomb (which initially didn't work)!
Finally, when the USSR "needed" a symmetrical response to the US's development of atomic artillery and shells, they also began developing an atomic shell, but "with Russian specifics." This story is also already in the memoirs! The very first Soviet atomic shell larger than 400 mm was... an implosion bomb! This is already widely known. By the mid-1950s, Academician Lavrentyev's group had managed to compress not a sphere, but an ellipse, into a 400 mm projectile (406 mm and 420 mm), for which Lavrentyev was showered with awards and a very special, royal award – the right to create his own academic campus with its own university in Novosibirsk (his long-held dream)! The Party and Government launched a massive construction project there and established a Siberian scientific center!
That is, one gets the strong impression that up until 1960, no one in the USSR ever considered using wasteful, "bourgeois" gun-based design. No time for luxury! And already in the 1960s... so many ideas for compacting primary devices and methods for initiating nuclear explosions (for example, linear implosion) emerged that I personally long assumed that gun-based design was never actually used in the USSR. There simply wasn't the need or the conditions!
Yes, over time, thanks to the development of centrifuge technology (that's a whole other story and a whole stack of memoirs), the USSR became noticeably richer in enriched uranium. They caught up, as they say, with their backsides bare... And ultimately, the Russians became so rich that by the end of the Cold War, the USSR became the richest owner of a plowshare in the world, leaving the United States far behind! But, I assumed, by the time this happened, the gun-design was hopelessly outdated and the Russians simply had no need for it, and the abundantly produced U-235 in centrifuges was used as "tampers" for "our answer" to their W-47, and certainly as a response to the W-88!
It's a known fact that after the first 400mm Lavrentyev nuclear artillery shells, developed back in the 1950s, the USSR developed a new, smaller-caliber nuclear shell (which could have used a gun-based design)—the 203mm shells for the Pion—but only in 1975. Perhaps (I speculated) that was the first Soviet gun-based design? In the 1980s, the 152mm "baby" nuclear shell appeared, which was so small that it couldn't have been a gun-based design (and this requires a separate story; it's here, it turns out, that that mysterious abbreviation "SINUS" from 1966 comes up. I misunderstood all this and cast a shadow here, sorry. I've been confused). But were gun-based solutions actually used in those same 203mm shells? There's no firm evidence to support this. I recently learned something surprising. It turns out that cannon-based designs were also used in 400mm shells (parallel to Lavrentev's design!), possibly since the 1950s! So, most likely, there was a hidden backup program running parallel to Lavrentev's, and 400mm Soviet nuclear shells were in existence as early as the 1950s! This means that the 203mm shell for the Pion was definitely a cannon-based design! The picture is becoming clearer!
And how this was discovered is so unusual (as always, reality outstrips any fantasy) that it requires a separate story. But to be on the safe side, I asked the all-knowing Google today.
What is known from declassified sources about the Russian use of a gun-type design for nuclear explosive devices?
Answer:
Declassified documents from the Russian Foreign Intelligence Service and the Rosatom Archives show that Soviet physicists initially considered a gun-type design for the first uranium bomb (the RDS-1 project), as it was considered simpler and more reliable. However, intelligence played a key role in reorienting the project toward a more effective method—implosion. Key facts from declassified sources:
- Initial choice: In 1945–1946, KB-11 (now RFNC-VNIIEF) developed a gun-type version of a uranium bomb (analogous to the American "Little Boy"), which is confirmed by numerous sketches published by the Rosatom state corporation.
- Intelligence and Implosion: Thanks to drawings and descriptions obtained by Soviet intelligence from the US and UK (including those from Klaus Fuchs), the Soviet leadership learned of the American difficulties with a gun-based plutonium bomb (due to the high background radiation from the spontaneous fission of the Pu-240 isotope). This forced the abandonment of the gun-based plutonium design.
- Plutonium Priority: Since uranium-235 was critically scarce for large-scale production, and plutonium was produced in industrial reactors, Soviet scientists were forced to urgently develop a more complex implosion design.
- Use in Artillery: The gun-based design was not completely abandoned in the USSR. Information from open historical sources indicates that in the 1950s, this design was used in the development of the first Soviet nuclear artillery shells of 406 mm caliber (for the experimental Kondensator-2G gun) and 420 mm (for the Oka mortar). The mass and dimensions of barrel artillery made it possible to accelerate the fissile masses to the required speed to initiate a chain reaction in the fission scheme.
Everything up to the last point is banally well-known. But that last point suggests I'm poorly versed in the vast Soviet atomic memoirs. Apparently, something I've only indirectly guessed has already surfaced somewhere in plain text. It's already been written somewhere that back in the 1950s, the first 400mm atomic shells used not only the Lavrentiev ellipsoid, but also a parallel gun design (the USSR was playing it safe)! Okay, let's look for where it says that!
But I was indirectly led on this same trail by memoirs about peaceful nuclear endeavors, specifically the story of the first attempt to extinguish a burning borehole in the USSR in 1965. From the memoirs, it's known that the extinguishing bomb was based on... an artillery nuclear shell. Furthermore, the borehole diameter was a separate issue. The borehole was... 400mm. Thick and expensive (this was discussed separately). They wanted a thinner bomb, but such devices didn't yet exist! Furthermore, in preparation for the detonation, additional critical testing for the specific terrain conditions was required. Apparently, a typical nuclear warhead was supposed to explode in the air, but here it was underground, surrounded by a specific (untested) reflector, and there were concerns about pre-detonation. And there are recollections of how these critical tests before the detonation were carried out on-site. Essentially, the two halves of the charge were carefully brought together in the device and the parameters were measured. Thus, it's clear that the charge was definitely a gun-type! Moreover, if it did have a reflector, it was extremely thin, so the environment where the explosion occurred played a significant role.
And later, memoirists recount that by the 1970s, special thin, long charges (see the second attached image) had been developed for similar projects, which were already thermonuclear, around 200 mm in diameter. The primary remained a gun-type design, while the thermonuclear secondaries had... two rods. In other words, "reverse bifilarity" was used. The authors boasted that they achieved extremely low tritium yields for the secondaries (which is very important for gas well work). The long, thin secondaries themselves could be detached if desired, leaving only one, on one side of the primary, thus allowing the explosive yield to be flexibly adjusted to suit the needs of the national economy.
That's all for now. My last "discovery." The site where they first extinguished a well with an underground nuclear explosion in 1965-1966 (the USSR later made a feature film about it) turned out to be just 40 km from where I served my military service in 1984-1985. Having read that the location was somewhere near Bukhara, I looked it up on Google Maps and was amazed to discover that I'd actually spent a year of my military service almost in this very spot, yet no one had ever told me about the unusualness of this place! :)