Naive question, and I hope someone more knowledgeable than me can enlighten me here; Why are we even testing for superconductivity with levitation, instead of just checking for current loss/heat loss while conducting?
This question has been asked with near identical or very similar wording in almost every LK-99 submission I've seen over the last week or so... Is there something botnet-y happening? I find it hard to believe anyone reading similar threads could have missed the numerous answers to this and similarly-formed questions that have been offered lately.
Ferromagnetic half levitation of LK-99-like synthetic samples
141–150 of 331 posts
Re: Ferromagnetic half levitation of LK-99-like synthetic samples
#142According to this: https://twitter.com/Andercot/status/1688598313497694208 "...there is a less well-known exception to this rule called Brauenbecker extension which provides a mathematical proof that levitation is possible with a simple diamagnetic in a dipole field so long as the diamagnetic material mass is very small relative to the strength of the magnetic field." I was very hopeful in the early days and was foll…
Having worked in that field for many years I'm personally skeptical that there ever will be an ambient-pressure, room-temperature superconductor. The band structure and interactions that need to be present in the material are just one requirement for superconductivity, the other is that the ground state can actually form and won't be destroyed by thermal noise. However, the strong electron-phonon interaction required for (classical) superconductivity also makes the system susceptible to thermal noise, and in my opinion the thermal noise level at 290 K is just too much even for an ideal superconducting material.
Re: Ferromagnetic half levitation of LK-99-like synthetic samples
#143Has anyone even seen a ferromagnet stand up like that in a magnetic field?
Yes. https://nitter.net/VanGennepD/status/1688052003216261120 And this new paper finally rigorously explains away all the half-levitation videos. They can no longer be considered any evidence of SC at all.
Re: Ferromagnetic half levitation of LK-99-like synthetic samples
#144I knew it was fake, there would have been a huge rise in the stock market. Financial markets would have sniffed this out. The market never lies. If anything, this was an obvious opportunity to short it on prediction markets.
You're saying that, if this had been real, the stock market would have known about it before the scientific community? How exactly? The markets do predict things but they can't synthesise correct information out of nowhere. Wall Street stock brokers weren't exactly going to sit down and start trying to replicate these results to see if they could cash in on it
Re: Ferromagnetic half levitation of LK-99-like synthetic samples
#145Earlier quoted context omitted.
There is, a combination of strong (but not amazingly strong) diamagnetism at low field strengths and soft ferromagnetism (in floating samples) at high field strengths. Which is exactly what the paper in the link observed while getting the same results everyone else has. The only unambiguous sign of superconductivity was the original resistance graph which can apparently be explained by contact issues with four point…
Doesn't diamagnetic levitation require a specific arrangement of the permamagnets that is not recreated in these videos?
Re: Ferromagnetic half levitation of LK-99-like synthetic samples
#146Re: Ferromagnetic half levitation of LK-99-like synthetic samples
#147Re: Ferromagnetic half levitation of LK-99-like synthetic samples
#148Very interesting comments on the paper by Prof. Michael S. Fuhrer https://nitter.net/i/status/1688755932275384320 > But I think they buried the lede a little. Ferromagnetism is novel and unexpected in this material system, and might be interesting. But strong diamagnetism even more so > Even if the diamagnetic fraction is the entire sample (appears less) then it would be the second-strongest diamagnet known (and pyro…
There are 2 things in favor of the Korean team - Hyun-Tak Kim is unlikely to ruin his career and legacy for something careless and frivolous. But stranger things have happened, so lets assign a 10% probability to give some benefit of doubt to the team. - The various DFT papers show interesting flat band structures. But DFT is an approximation and also they do not take into account electron electron correlations. So l…
Re: Ferromagnetic half levitation of LK-99-like synthetic samples
#149According to this: https://twitter.com/Andercot/status/1688598313497694208 "...there is a less well-known exception to this rule called Brauenbecker extension which provides a mathematical proof that levitation is possible with a simple diamagnetic in a dipole field so long as the diamagnetic material mass is very small relative to the strength of the magnetic field." I was very hopeful in the early days and was foll…
Stable levitation in a dipole field is still thought to be something only type II superconductors can do, and Andrew should not uncritically repeat what he read on /sci/ - which is one of the only other google results for "Brauenbecker extension" currently (after his tweet).
Re: Ferromagnetic half levitation of LK-99-like synthetic samples
#150Earlier quoted context omitted.
> They were refusing to share them with anyone reputable until today. This is incorrect (under some definition of "reputable"), because KENTECH [1] has reportedly received samples from Q-Center for the analysis, which started on July (following the MOU on May) and is estimated to finish within 6 months. Whether KENTECH is reputable or not, and whether it should be considered affiliated with Q-Center is of course deba…
I don't consider a replication attempt with a lab in a commercial relationship with another lab, that has essentially embargoed the results for six months, credible.