Investigation of the relation between microstructural parameters and magnetic properties of KClO3-doped YBCO superconductors

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Abstract

The influence of KClO3 addition on the microstructure and magnetic properties of YBCO were investigated. The AC complex susceptibility χAC = χ′ - iχ″ recorded as a function of temperature and concentration of KClO3 addition at various AC magnetic fields up to 2 mT. DC magnetization as function of temperature was measured by means of a SQUID magnetometer in field-cooled cooling and field-cooled warming (FCW) modes in magnetic fields in the range 0 ≤ μ0 Ha ≤ 7 T.

Original languageEnglish
Pages (from-to)1989-1990
Number of pages2
JournalPhysica C: Superconductivity and its Applications
Volume341-348
Issue numberPART 2
Publication statusPublished - 2000
Externally publishedYes

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YBCO superconductors
Superconducting materials
Magnetic properties
alternating current
Magnetic fields
magnetic properties
SQUIDs
Magnetometers
Magnetization
Cooling
magnetic fields
Temperature
magnetometers
Microstructure
direct current
magnetic permeability
cooling
magnetization
microstructure
heating

ASJC Scopus subject areas

  • Condensed Matter Physics

Cite this

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abstract = "The influence of KClO3 addition on the microstructure and magnetic properties of YBCO were investigated. The AC complex susceptibility χAC = χ′ - iχ″ recorded as a function of temperature and concentration of KClO3 addition at various AC magnetic fields up to 2 mT. DC magnetization as function of temperature was measured by means of a SQUID magnetometer in field-cooled cooling and field-cooled warming (FCW) modes in magnetic fields in the range 0 ≤ μ0 Ha ≤ 7 T.",
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AU - Murakami, Masato

PY - 2000

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AB - The influence of KClO3 addition on the microstructure and magnetic properties of YBCO were investigated. The AC complex susceptibility χAC = χ′ - iχ″ recorded as a function of temperature and concentration of KClO3 addition at various AC magnetic fields up to 2 mT. DC magnetization as function of temperature was measured by means of a SQUID magnetometer in field-cooled cooling and field-cooled warming (FCW) modes in magnetic fields in the range 0 ≤ μ0 Ha ≤ 7 T.

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