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Defect control at nanoscale of MgB2 by doping various nanoparticles including Ti, C, nano-diamond, and HoB4, and their roles played to enhance flux pinning force in MgB2 are compared and analyzed. These nanodopants have different chemical and physical properties, thus bring about different pinning efficiency, especially nanodopants with strong magnetic moment are particularly interesting as pinning centers in MgB2 since magnetic impurities usually have a stronger interaction with magnetic flux line than nonmagnetic impurities and may exert a stronger force to trap the flux lines when they are properly introduced into the superconducting matrix.
Defect control at nanoscale of MgB2 by doping various nanoparticles including Ti, C, nano-diamond, and HoB4, and their roles played to enhance flux pinning force in MgB2 are compared and analyzed. These nanodopants have different chemical and physical properties, thus bring about different pinning efficiency, especially nanodopants with strong magnetic moments are quite interesting as pinning centers in MgB2 since magnetic more than and magnetic flux and may exert a stronger force to trap the flux lines when they are properly introduced into the superconducting matrix.