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Development of Spatial Inhomogeneity of Internal Magnetic Field Above T sub( c) in Bi sub( 2)Sr sub( 2)Ca sub( 1-x)Y sub( x)Cu sub( 2)O sub( 8+ delta ) Observed by Longitudinal-Field Muon Spin Relaxation

Longitudinal-field muon-spin-relaxation measurements have revealed inhomogeneous distribution of the internal magnetic field at temperatures above the bulk superconducting (SC) transition temperature, Tc, in slightly overdoped ... The distribution width of the internal magnetic field, ..., evolves c...

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Published in:Journal of the Physical Society of Japan 2014-07, Vol.83 (7), p.1-1
Main Authors: Tanabe, Yoichi, Adachi, Tadashi, Suzuki, Kensuke M, Akoshima, Megumi, Heguri, Satoshi, Kawamata, Takayuki, Ishii, Yasuyuki, Suzuki, Takao, Watanabe, Isao, Koike, Yoji
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container_issue 7
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container_title Journal of the Physical Society of Japan
container_volume 83
creator Tanabe, Yoichi
Adachi, Tadashi
Suzuki, Kensuke M
Akoshima, Megumi
Heguri, Satoshi
Kawamata, Takayuki
Ishii, Yasuyuki
Suzuki, Takao
Watanabe, Isao
Koike, Yoji
description Longitudinal-field muon-spin-relaxation measurements have revealed inhomogeneous distribution of the internal magnetic field at temperatures above the bulk superconducting (SC) transition temperature, Tc, in slightly overdoped ... The distribution width of the internal magnetic field, ..., evolves continuously with decreasing temperature toward Tc. The origin of the increase in ... is discussed in terms of the generation of SC domains in a sample. (ProQuest: ... denotes formulae/symbols omitted.)
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source American Institute of Physics:Jisc Collections:Transitional Journals Agreement 2021-23 (Reading list)
subjects Inhomogeneity
Magnetic fields
Magnetic properties
Muon spin relaxation
Origins
Particle spin
Superconductivity
Transition temperature
title Development of Spatial Inhomogeneity of Internal Magnetic Field Above T sub( c) in Bi sub( 2)Sr sub( 2)Ca sub( 1-x)Y sub( x)Cu sub( 2)O sub( 8+ delta ) Observed by Longitudinal-Field Muon Spin Relaxation
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