How likely is this to lead to breaking all encryption by enabling way bigger superconducting quantum computers with way more qubits than are reasonable nowadays? Is this just going to turn into cyberwar on steroids?
There are post-quantum-computing encryption schemes [1], thankfully. [1]: https://en.wikipedia.org/wiki/Post-quantum_cryptography
A room-temperature superconductor? New developments
141–150 of 821 posts
Re: A room-temperature superconductor? New developments
#142Earlier quoted context omitted.
I'm sure Elon also has SpaceX or something trying to replicate it as well. He sort of has to jump on each new trend anyhow. In a serious note, superconductors are likely useful in electric magnetic motors and probably in high power electronics and batteries in general, no?
LK-99 is already patented so even if Elon were making a ton of it, he couldn't do much in his products without licensing it from the creators.
Re: A room-temperature superconductor? New developments
#143Re: A room-temperature superconductor? New developments
#144Earlier quoted context omitted.
Superconductor means low resistance. Low resistance means less loss due to heat on a wire. Room temperature superconductor also means more efficient magnets for motors, coils, ending up in cars, MRI machines, etc.
Not just low... _zero_. That's where things get weird.
(The EE I worked with later didn't believe me. See https://en.wikipedia.org/wiki/Superconducting_magnet#Persist... and note that the loss was due to details of magnetic superconductors, not superconductors in general)
Re: A room-temperature superconductor? New developments
#145Earlier quoted context omitted.
Can someone explain how this video shows superconductivity?
[not an expert but...]It shows strong diamagnetism(being repelled by both of the poles of a magnet), which is a property of superconductors. Not necessarily a superconductor though, that’s still to be established but at least it shows that the inventors are up to something and it’s not complete fabrication.
Re: A room-temperature superconductor? New developments
#146I still have a very, very hard time understanding what all of this means. Is there an easy to understand explanation for a room temperature superconductor?
Re: A room-temperature superconductor? New developments
#147Earlier quoted context omitted.
[not an expert but...]It shows strong diamagnetism(being repelled by both of the poles of a magnet), which is a property of superconductors. Not necessarily a superconductor though, that’s still to be established but at least it shows that the inventors are up to something and it’s not complete fabrication.
Why don’t they try heating it and seeing if the effect goes away? You could even try a welding torch or something.
Re: A room-temperature superconductor? New developments
#148I'm glad to hear that I'm not the only one who thought that the DFT computational preprints were very promising. Unfortunately, they also indicate that the desired substitution will be very hard to achieve — crucially, the "crush and separate the composite" suggestion a few commenters have made is unlikely to work, since the heterogeneity exists within the same crystal, depending on whether Cu substitutes into Pb {1}…
Re: A room-temperature superconductor? New developments
#149Earlier quoted context omitted.
I'm sure Elon also has SpaceX or something trying to replicate it as well. He sort of has to jump on each new trend anyhow. In a serious note, superconductors are likely useful in electric magnetic motors and probably in high power electronics and batteries in general, no?
LK-99 is already patented so even if Elon were making a ton of it, he couldn't do much in his products without licensing it from the creators.
Re: A room-temperature superconductor? New developments
#150I'm glad to hear that I'm not the only one who thought that the DFT computational preprints were very promising. Unfortunately, they also indicate that the desired substitution will be very hard to achieve — crucially, the "crush and separate the composite" suggestion a few commenters have made is unlikely to work, since the heterogeneity exists within the same crystal, depending on whether Cu substitutes into Pb {1}…
CMTC says the Griffin paper doesn't really shift anything and they still believe replication is unlikely: https://twitter.com/condensed_the/status/1686373904044949504...