Given the cooling requirements, I suppose it would create completely impassable rift between datacenter computing and other kinds. Imagine how programming and operating systems might look in a world where processing power is 80x cheaper. Considering that "data centers alone consume 2% of world's enegy", I think it's worth it.
>Imagine how programming and operating systems might look in a world where processing power is 80x cheaper. So like 2009 compared to 2021? Based on that, I'd say even more inefficient webshit.
New superconductor microprocessor yields a substantial boost in efficiency
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Re: New superconductor microprocessor yields a substantial boost in efficiency
#102Earlier quoted context omitted.
It seems likely that the more efficient our processors become, the larger share of the world's energy we'll devote to them [0]. Not that that's necessarily a bad thing, if we're getting more than proportionally more utility out of the processors, but I worry about that too [1]. [0] https://en.wikipedia.org/wiki/Jevons_paradox [1] https://en.wikipedia.org/wiki/Wirth%27s_law
>Not that that's necessarily a bad thing, if we're getting more than proportionally more utility out of the processors The trend seems to be that we get only a little bit of extra utility out of a lot of extra hardware performance. When the developer upgrades their PC it's easier for them to not notice performance issues. This creates the situation where every few years you need to buy a new PC to do the things you a…
"hardware giveth, and software taketh away"
Re: New superconductor microprocessor yields a substantial boost in efficiency
#103Earlier quoted context omitted.
> The difference in cost of producing liquid nitrogen and liquid helium is enormous. Quick google search yields: $3.50 for 1L of He vs $0.30 for 1L of H2. So roughly 10 times more expensive.
That price is more than a decade out of date. Helium has been about 10x that the past half decade. I used to pay about $3,000 per 100L dewar a few years ago. Sounds like that price was still common in 2020: https://physicstoday.scitation.org/do/10.1063/PT.6.2.2020060... Plus, liquid helium is produced as a byproduct of some natural gas extraction. If you needed volumes beyond that production, which seems likely if yo…
Re: New superconductor microprocessor yields a substantial boost in efficiency
#104Earlier quoted context omitted.
Heat conduction also scales with thermal conductivity, which is another thing that advances in solid state can bring us.
This doesn't change the fact that, for any degree of heat conductivity achieved smaller packages will be hard to keep cold than large ones.
Re: New superconductor microprocessor yields a substantial boost in efficiency
#105Earlier quoted context omitted.
Mind expanding on this a bit more? What is that that limit and how does it relate to the clock speed?
It's not about clock speed per se. It's about the lowest possible energy expenditure to erase one bit of information (or irreversibly destroy it by performing a logical operation). The principle comes about from reasoning about entropy loss in said situations. There's a hypothesized fundamental connection between information and entropy manifest in physical law. The idea is that if you destroy one possible state of a…
It's like if someone made a car that drives at 1/38th the light speed.
Re: New superconductor microprocessor yields a substantial boost in efficiency
#106Nice, but requires 10 K temperature - not very practical. Once this can be done at the temperature of liquid nitrogen, that will be a true revolution. The difference in cost of producing liquid nitrogen and liquid helium is enormous. Alternatively, such servers could be theoretically stored in the permanently shaded craters of the lunar South Pole, but at the cost of massive ping.
If the throughput is fast enough 3+3=6 seconds latency doesn't really sound that bad. There are websites with that kind of lag. You can't use to build a chat app, but you can use it as a cloud for general computing.
Re: New superconductor microprocessor yields a substantial boost in efficiency
#107Earlier quoted context omitted.
In Sundiver by David Brin they put all the heat in a laser, so they can beam it away from their craft
Is it possible to do this without violating the second law of thermodynamics?
Re: New superconductor microprocessor yields a substantial boost in efficiency
#108Earlier quoted context omitted.
It's not about clock speed per se. It's about the lowest possible energy expenditure to erase one bit of information (or irreversibly destroy it by performing a logical operation). The principle comes about from reasoning about entropy loss in said situations. There's a hypothesized fundamental connection between information and entropy manifest in physical law. The idea is that if you destroy one possible state of a…
Is there an idea of entropic potential energy/gradient/pressure? Could you differentiate encrypted data from noise by testing how much energy it requires to flip a bit?
Re: New superconductor microprocessor yields a substantial boost in efficiency
#109Earlier quoted context omitted.
>Imagine how programming and operating systems might look in a world where processing power is 80x cheaper. So like 2009 compared to 2021? Based on that, I'd say even more inefficient webshit.
Considering that many modern interfaces are somehow less responsive than ones written over 20 years ago even when running those programs on period hardware , I feel certain that you are right.
Re: New superconductor microprocessor yields a substantial boost in efficiency
#110Earlier quoted context omitted.
It's not about clock speed per se. It's about the lowest possible energy expenditure to erase one bit of information (or irreversibly destroy it by performing a logical operation). The principle comes about from reasoning about entropy loss in said situations. There's a hypothesized fundamental connection between information and entropy manifest in physical law. The idea is that if you destroy one possible state of a…
Is there an idea of entropic potential energy/gradient/pressure? Could you differentiate encrypted data from noise by testing how much energy it requires to flip a bit?