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Superconductivity at an antiferromagnetic quantum critical point: Role of energy fluctuations

机译:反铁磁量子临界点的超导性:能量波动的作用

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Motivated by recent experiments reporting superconductivity only at very low temperature in a class of heavy fermion compounds, we study the impact of energy fluctuations with small momentum transfer on the pairing instability near an antiferromagnetic quantum critical point. While these fluctuations, formed by composite spin fluctuations, were proposed to explain the thermodynamic and transport properties near the quantum critical point of compounds such as YbRh2Si2 and CeCu6-xAux at x approximate to 0.1, here they are found to strongly suppress T-c of the d-wave pairing of the hot quasiparticles promoted by the spin fluctuations. Interestingly, if energy fluctuations are strong enough, they can induce triplet pairing involving the quasiparticles of the cold regions of the Fermi surface. Overall, the opposing effects of energy and spin fluctuations lead to a suppression of T-c.
机译:受最近的实验报道,仅在一类重费米子化合物中处于非常低的温度下具有超导性,我们研究了具有小动量传递的能量波动对反铁磁量子临界点附近的配对不稳定性的影响。虽然提出了由复合自旋涨落形成的这些涨落来解释在x处近似于0.1的YbRh2Si2和CeCu6-xAux等化合物的量子临界点附近的热力学和输运性质,但在这里发现它们强烈抑制了d自旋涨落促进了热准粒子的波配对。有趣的是,如果能量波动足够大,它们会引起三重态配对,这涉及费米表面寒冷区域的准粒子。总体而言,能量和自旋波动的相反影响导致T-c的抑制。

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  • 来源
    《Physical review. B, Condensed Matter And Materals Physics 》 |2018年第21期| 214515.1-214515.6| 共6页
  • 作者单位

    Natl High Magnet Field Lab Tallahassee FL 32304 USA;

    Univ Minnesota Sch Phys & Astron Minneapolis MN 55455 USA;

    Univ Calif Los Angeles Dept Phys & Astron Los Angeles CA 90095 USA;

    Karlsruhe Inst Technol Inst Theory Condensed Matter D-76049 Karlsruhe Germany|Karlsruhe Inst Technol Inst Nanotechnol D-76031 Karlsruhe Germany;

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