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Non-sinusoidal current-phase relations in superconductor-ferromagnet-superconductor Josephson junctions.

机译:超导体-铁磁体-超导体约瑟夫森结中的非正弦电流-相位关系。

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摘要

We have directly measured the current-phase relation (CPR) of a superconductor-ferromagnet-superconductor (SFS) Josephson junction, and determined that it contains a positive second-harmonic term proportional to sin(2&phis;). The second-harmonic term becomes dominant near Tpi, the temperature at which the first-order term switches between the 0-state and the pi-state. In SFS junctions, the interaction of the correlated electron states from the superconductor with the ferromagnet causes the superconducting order parameter to oscillate so that the ground state can have a phase difference of zero, as in a conventional Josephson junction, or a phase difference of pi, depending on the barrier thickness. The oscillation length is a function of the ferromagnetic exchange energy, Eex, and temperature, so SFS junctions with Eex ≈ Tc (the superconducting transition temperature) that are fabricated near a 0-to-pi crossover thickness can also be modulated between the 0-state and pi-state as a function of temperature. We use the weak ferromagnetic alloy Cu47Ni53 as the barrier material with a thickness of 7nm, which is near the first thickness dependent 0-to-pi crossover point. At this crossover point, it has been predicted that an intrinsic second-order term would dominate the CPR due to the suppression of the first-order component. Alternative theories predict that a negative second-order term could arise, in a narrow temperature regime at the 0-to-pi crossover point, from a competition between the 0-state and pi-state due to inhomogeneities. Our direct measurement indicates a positive second-harmonic that is constant over the temperature range where it is accessible. Additional transport measurements are consistent with the direct measurement and indicate that the second-harmonic term persists over a temperature range of at least 1.5K. These results indicate an intrinsic second-harmonic in the CPR of our junctions.
机译:我们直接测量了超导体-铁磁体-超导体(SFS)约瑟夫森结的电流-相位关系(CPR),并确定它包含与sin(2φ)成比例的正二次谐波项。在Tpi(一阶项在0态和pi态之间切换的温度)附近,第二谐波项成为主导。在SFS结中,来自超导体的相关电子态与铁磁体的相互作用导致超导阶数参数振荡,因此基态可以具有零相位差(如常规的Josephson结一样)或pi的相差,取决于阻挡层的厚度。振荡长度是铁磁交换能量,Eex和温度的函数,因此SFS与Eex≈在0到pi的跨接厚度附近制造的Tc(超导转变温度)也可以根据温度在0态和pi态之间进行调制。我们使用弱铁磁合金Cu47Ni53作为势垒材料,其厚度为7nm,接近于第一厚度相关的0-pi交叉点。在这个交叉点,已经预料到,由于抑制了一阶分量,固有的二阶项将主导CPR。替代理论预测,由于不均匀性,在0到pi的交越点的狭窄温度范围内,0态和pi态之间的竞争会产生负的二阶项。我们的直接测量表明正二次谐波在可访问的温度范围内恒定。额外的传输测量结果与直接测量结果一致,表明二次谐波项在至少1.5K的温度范围内持续存在。这些结果表明我们的交界处的心肺复苏中固有的二次谐波。

著录项

  • 作者单位

    University of Illinois at Urbana-Champaign.;

  • 授予单位 University of Illinois at Urbana-Champaign.;
  • 学科 Physics Condensed Matter.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 84 p.
  • 总页数 84
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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