Superconductivity and Superfluidity

Superconductivity is the property of matter when it displays zero resistance to the flow of electric current. Superconductivity undertakes extraordinary capabilities for electric circuits. If conductor resistance could be eliminated completely, there would be no inefficiencies in electric power systems due to stray resistances. Electric motors could be made almost perfectly efficient. The ideal characteristics of components like capacitors and inductors are normally ruined by inherent wire resistances, could be made ideal in a practical sense. Superfluidity is the property of liquid where it behaves as an unrestricted or zero tension liquid. Together of these phenomena are stretched at definite low temperatures and have obligations in accomplishing this period. Also succeeding these phenomena at high temperature is a challenge to researchers and a big of work is going on for this. Despite this, superconductors are having a wide range of presentations in modern day laboratories and new infrastructures.

  • Strongly correlated electrons systems (SCES)
  • Magnetic fluids
  • Magnetic semiconductors
  • Ferrofluids
  • High-Tc cuprates
  • Fe-based superconductivity
  • Superconductivity at nanoscale
  • Organic superconductivity
  • Magnetic superconductors
  • Conductors and insulators
  • Boron-based superconductivity
  • Superconducting materials

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