Discovery of superconductivity in quasicrystal
Открытие сверхпроводимости в квазикристалле
2018-01-05
SCID: 54.1/p88qbn2s
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Al-Zn-Mg quasicrystalelectrical resistivitymagnetizationspecific heatsuperconductivity in quasicrystal
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Abstract (AI)
Superconductivity is ubiquitous as evidenced by the observation in many crystals including carrier-doped oxides and diamond. Amorphous solids are no exception. However, it remains to be discovered in quasicrystals, in which atoms are ordered over long distances but not in a periodically repeating arrangement. Here we report electrical resistivity, magnetization, and specific-heat measurements of Al-Zn-Mg quasicrystal, presenting convincing evidence for the emergence of bulk superconductivity at a very low transition temperature of [Formula: see text] K. We also find superconductivity in its approximant crystals, structures that are periodic, but that are very similar to quasicrystals. These observations demonstrate that the effective interaction between electrons remains attractive under variation of the atomic arrangement from periodic to quasiperiodic one. The discovery of the superconducting quasicrystal, in which the fractal geometry interplays with superconductivity, opens the door to a new type of superconductivity, fractal superconductivity.
Key Findings
1
Bulk superconductivity is observed in an Al-Zn-Mg quasicrystal, evidenced by resistivity, magnetization, and specific-heat measurements.
2
Superconductivity is also found in approximant crystals structurally similar to the quasicrystal.
3
The discovery suggests interplay between fractal (quasiperiodic) geometry and superconductivity, indicating the possibility of 'fractal superconductivity.'
4
The superconducting transition temperature in the Al-Zn-Mg quasicrystal is very low, reported as [Formula: see text] K.
5
These results show the effective electron-electron interaction remains attractive when atomic order varies from periodic to quasiperiodic.
Research Object
Al-Zn-Mg quasicrystal
Research Subject
Emergence of bulk superconductivity (transition temperature, electrical resistivity, magnetization, specific heat evidence) in the Al-Zn-Mg quasicrystal and its relation to quasiperiodic (fractal) atomic arrangement
Publication Details
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2018-01-05
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