Measurement of Tc suppression in tungsten using magnetic impurities
Author(s) -
Betty Young,
T. Saab,
Blas Cabrera,
J. J. Cross,
R. M. Clarke,
R. Abusaidi
Publication year - 1999
Publication title -
journal of applied physics
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.699
H-Index - 319
eISSN - 1089-7550
pISSN - 0021-8979
DOI - 10.1063/1.371781
Subject(s) - condensed matter physics , tungsten , rkky interaction , doping , dopant , materials science , antiferromagnetism , impurity , atom (system on chip) , ion implantation , ion , superconductivity , relaxation (psychology) , transition temperature , chemistry , physics , metallurgy , social psychology , psychology , organic chemistry , computer science , embedded system
We have measured the effects of dilute magnetic-atom doping on the superconducting transition temperature of tungsten thin films. Our “Tc tuning” technique is accurate, precise, and simple. Experiments were performed using dc-magnetron-sputtered tungsten films with undoped values of Tc in the range of 70–150 mK. The magnetic-atom doping was achieved using ion implantation. Specific Tc suppressions of between 5% and 65% were targeted and observed in this study. The transition width of each undoped sample was ≈1 mK and the transition widths remained sharp after implantation with 56Fe+ ions. Our data are in good agreement with predictions of a linear dependence of Tc suppression with increasing magnetic-atom concentration, in the small concentration limit. At higher concentrations, antiferromagnetic coupling between the magnetic dopant atoms becomes important and the Tc-suppression effect is diminished. We use our Tc data to calculate the Abrikosov–Gor’kov (AG) and Ruderman–Kittel–Kasuya–Yosida (RKKY) spin–f...
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