Origin of correlated isolated flat bands in LK99
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Re: Origin of correlated isolated flat bands in LK99
#2OK I'm starting to actually believe that LK-99 might be the real deal.
Re: Origin of correlated isolated flat bands in LK99
#3Re: Origin of correlated isolated flat bands in LK99
#4Re: Origin of correlated isolated flat bands in LK99
#5In the last paragraph before acknowledgements, they point to a feature that could make synthesis difficult, then conclude with "Nevertheless, I expect the identification of this new material class to spur on further investigations of doped apatite minerals given these tantalizing theoretical signatures and experimental reports of possible high-TC superconductivity."
(I'm a high school dropout, worked for a physics project once)
Re: Origin of correlated isolated flat bands in LK99
#6Even if LK99 turns out to be a dud, it's proven that there's a great need and great opportunity for more direct communication from scientist on their experiments via the internet. Live Stream of the Synthesis, Twitter Threads giving life updates of different teams, etc.
Based on the early successes shown by applying social media platforms like Twitter, Twitch, Discord, etc, to accelerating science, I hope we can evolve better tools and platforms which are equally open but even more suited to the exchange of scientific ideas, results, review and feedback.
Re: Origin of correlated isolated flat bands in LK99
#7Re: Origin of correlated isolated flat bands in LK99
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#9Re: Origin of correlated isolated flat bands in LK99
#10What this means for the more practical minded is that the synthesis of superconducting LK-99 is not trivial and you need to make the appropriate substitutional alloy for this to work.
This is a DFT paper, and a band structure that is usually seen in high Tc superconductors just naturally came out. She also talks about the strong electron-phonon coupling that naturally arose from the structure, which is always necessary for superconductivity.
I am, by far, the most excited I've ever been about this being a RT, ambient pressure superconductor.