2005
DOI: 10.1103/physrevb.71.174506
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Al substitution inMgB2crystals: Influence on superconducting and structural properties

Abstract: Single crystals of Mg 1-x Al x B 2 have been grown at a pressure of 30 kbar using the cubic anvil technique. Precipitation free crystals with x < 0.1 were obtained as a result of optimization of already developed MgB 2 crystal growth procedure. Systematic decrease of the c-axis lattice constant with increasing Al content, when the a-axis lattice constant is practically unchanged, was observed. Variation of the critical temperature on Al content in Mg 1-x Al x B 2 crystals was found to be slightly different tha… Show more

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Cited by 112 publications
(106 citation statements)
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“…When aluminum substitutes for magnesium, H ab c2 decreases while H ⊥ab c2 remains constant or slightly increases, resulting in an decrease in the anisotropy ratio, γ H =H ab c2 /H ⊥ab c2 . 7,8,9 . These changes can be understood as the result of changes in the Fermi surface topology of the σ band 10 .…”
Section: Introductionmentioning
confidence: 99%
“…When aluminum substitutes for magnesium, H ab c2 decreases while H ⊥ab c2 remains constant or slightly increases, resulting in an decrease in the anisotropy ratio, γ H =H ab c2 /H ⊥ab c2 . 7,8,9 . These changes can be understood as the result of changes in the Fermi surface topology of the σ band 10 .…”
Section: Introductionmentioning
confidence: 99%
“…19 such as silicone oil and other oxide or nonoxide nanomaterials. [5][6][7][8][9][10][11]19,20 Improvement of the j c ͑B͒ was quite successful for most of chemical doped MgB 2 . However, the origin of the pinning mechanisms are still not well understood except the silicon oil doped case.…”
Section: Introductionmentioning
confidence: 99%
“…One of vigorously discussed issues is a role of defects, which can be systematically introduced into the structure of MgB 2 by irradiation [2,3] or partial chemical substitutions (often Al for Mg or C for B) [4,5,6,7]. While some consequences of the substitution or irradiation, such as modification of the upper critical field (H c2 ) or changes in the width of superconducting gaps are rather indubitable, there is still no agreement on microscopic mechanisms leading to these effects.…”
mentioning
confidence: 99%