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首页> 外文期刊>Frontiers of physics >Robustness of s-wave pairing symmetry in iron-based superconductors and its implications for fundamentals of magnetically driven high-temperature superconductivity
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Robustness of s-wave pairing symmetry in iron-based superconductors and its implications for fundamentals of magnetically driven high-temperature superconductivity

机译:铁基超导体中s波对对称性的稳健性及其对磁驱动高温超导性基础的影响

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Based on the assumption that the superconducting state belongs to a single irreducible representation of lattice symmetry, we propose that the pairing symmetry in all measured iron-based superconductors is generally consistent with the A(1g) s-wave. Robust s-wave pairing throughout the different families of iron-based superconductors at different doping regions signals two fundamental principles behind high-T-c superconducting mechanisms: (i) the correspondence principle: the short-range magnetic-exchange interactions and the Fermi surfaces act collaboratively to achieve high-T-c superconductivity and determine pairing symmetries; (ii) the magnetic-selection pairing rule: superconductivity is only induced by the magnetic-exchange couplings from the super-exchange mechanism through cation-anion-cation chemical bonding. These principles explain why unconventional high-T-c superconductivity appears to be such a rare but robust phenomena, with its strict requirements regarding the electronic environment. The results will help us to identify new electronic structures that can support high-T-c superconductivity.
机译:基于超导状态属于晶格对称性的单个不可约表示的假设,我们建议所有测得的铁基超导体中的配对对称性通常与A(1g)s波一致。在不同掺杂区的不同族的铁基超导体之间进行稳健的s波配对,标志着高Tc超导机制背后的两个基本原理:(i)对应原理:短距离磁交换相互作用和费米表面共同起作用实现高Tc超导性并确定配对对称性; (ii)磁选择配对规则:超导仅由超交换机制通过阳离子-阴离子-阳离子化学键合产生的磁交换耦合引起。这些原理解释了为什么非常规的高T-c超导性似乎是一种如此罕见但坚固的现象,并且对电子环境有严格的要求。结果将帮助我们确定可以支持高T-c超导性的新电子结构。

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