Japanese researchers identified a structural measurement to reliably predict magnetic behavior in complex alloys, providing a practical guide for discovering quantum materials with unusual properties.

Japanese researchers identified a structural measurement to reliably predict magnetic behavior in complex alloys, providing a practical guide for discovering quantum materials with unusual properties.
Can superconductivity survive at a surface? In a layered quasicrystal, resistance changes with field angle and current support this interpretation. A resistance ratio is not a superconducting volume fraction.
https://note.com/hydezero/n/n177d2ddc9272?hl=en
#Superconductivity #Quasicrystals
In a layered quasicrystal, changing the resistance criterion changes the critical field. Angle and current dependence support surface superconductivity; they do not identify the pairing mechanism.
https://note.com/hydezero/n/n3a45a95cf354?hl=en
#Superconductivity #Quasicrystals
GL or Tinkham? A layered quasicrystal’s resistance criteria change its angular response. We examine transport evidence for surface superconductivity and the limits of diffusion-distribution fits.
https://note.com/hydezero/n/n3a45a95cf354?hl=en
#Superconductivity #Quasicrystals
Can superconductivity linger near a surface? In a layered quasicrystal, field-angle and current dependence support that interpretation. Our guide explains why resistance criteria matter.
https://note.com/hydezero/n/n177d2ddc9272?hl=en
#Superconductivity #Quasicrystals
Researchers discovered that pure dephasing—loss of quantum wave information—can create new mobility edges in quasicrystals, reshaping electron localization and enabling precise control of electronic properties through environmental interactions.