: The research group in Japan sought to create a superconductor microprocessor that’s adiabatic, meaning that, in principle, energy is not gained or lost from the system during the computing process. I thought that there was a law of information theory that requires expending energy, I think it's Landauer's principle. It seems to be disputed though. https://en.wikipedia.org/wiki/Landauer%27s_principle
Energy is expended when you zero or set a bit. If you compute reversibly you need use special logic gates to not throw any bits away during the computation, like the Toffoli gate. All your operations need to have the same number of input and output bits and needs to be able to run forwards and backwards. Effectively you set or zero no bits during the entire computation that can't be losslessly reversed. If you struct…
Superconducting Microprocessors? Turns Out They're Ultra-Efficient (2021)
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Re: Superconducting Microprocessors? Turns Out They're Ultra-Efficient (2021)
#32Another notch on the belt for a cryocooler boom. Oh “superconducting is hard”, “if only we had high temperature superconductors”. All valid, but if we work with what we got and disrupt cyrocoolers make them a commodity like magnetrons all those laments become moot. Prove me wrong.
Re: Superconducting Microprocessors? Turns Out They're Ultra-Efficient (2021)
#33Re: Superconducting Microprocessors? Turns Out They're Ultra-Efficient (2021)
#34: The research group in Japan sought to create a superconductor microprocessor that’s adiabatic, meaning that, in principle, energy is not gained or lost from the system during the computing process. I thought that there was a law of information theory that requires expending energy, I think it's Landauer's principle. It seems to be disputed though. https://en.wikipedia.org/wiki/Landauer%27s_principle
Energy is expended when you zero or set a bit. If you compute reversibly you need use special logic gates to not throw any bits away during the computation, like the Toffoli gate. All your operations need to have the same number of input and output bits and needs to be able to run forwards and backwards. Effectively you set or zero no bits during the entire computation that can't be losslessly reversed. If you struct…
Combine that with something that uses time dilation to make it go fast (from our frame of reference) and you'd be giving even hypothetical quantum computers a silver medal.
Re: Superconducting Microprocessors? Turns Out They're Ultra-Efficient (2021)
#35Re: Superconducting Microprocessors? Turns Out They're Ultra-Efficient (2021)
#36It's not about consuming less electricity. It's about dissipating less of it as heat inside the microprocessor. The future will made of tiny porous cubes that are tall sandwiches of RAM and CPU/GPU/etc
Re: Superconducting Microprocessors? Turns Out They're Ultra-Efficient (2021)
#37Re: Superconducting Microprocessors? Turns Out They're Ultra-Efficient (2021)
#38This is the future. As we try to go 3D and start stacking dies, the limiting factor of heat is getting even more blocking. It's not about consuming less electricity. It's about dissipating less of it as heat inside the microprocessor. The future will made of tiny porous cubes that are tall sandwiches of RAM and CPU/GPU/etc
Re: Superconducting Microprocessors? Turns Out They're Ultra-Efficient (2021)
#39Earlier quoted context omitted.
Energy is expended when you zero or set a bit. If you compute reversibly you need use special logic gates to not throw any bits away during the computation, like the Toffoli gate. All your operations need to have the same number of input and output bits and needs to be able to run forwards and backwards. Effectively you set or zero no bits during the entire computation that can't be losslessly reversed. If you struct…
Wait, so does this imply (ignoring the time requirements) that you could do NP calculations with a feasible amount of energy , because the inputs and outputs are small? Combine that with something that uses time dilation to make it go fast (from our frame of reference) and you'd be giving even hypothetical quantum computers a silver medal.
Re: Superconducting Microprocessors? Turns Out They're Ultra-Efficient (2021)
#40: The research group in Japan sought to create a superconductor microprocessor that’s adiabatic, meaning that, in principle, energy is not gained or lost from the system during the computing process. I thought that there was a law of information theory that requires expending energy, I think it's Landauer's principle. It seems to be disputed though. https://en.wikipedia.org/wiki/Landauer%27s_principle
Per the wikipedia article: “Modern computers use about a billion times as much energy per operation.” I’m guessing the efficiency gains can be considerable before hitting this limit.