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The superconducting transition temperatures of C-S-H based on inter-sublattice S-H_4-tetrahedron electronic interactions

机译:基于亚晶格间S-H_4-四面体电子相互作用的C-S-H超导转变温度

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摘要

Significant characteristics of the superconducting transitions reported for carbonaceous sulfur hydride Snider et al., Nature 585, 373 (2020) are the exceptionally abrupt onset temperatures and their marked increase toward room temperature at high pressures. Theoretical and experimental studies addressing the superconducting composition and structure have thus far returned mixed results. One possibility, consistent with the experimentally suggested stoichiometry of CSH_x, is the theoretically discovered compressed I43m CSH_7 structure Sun et al., Phys. Rev. B 101, 174102 (2020), which comprises a sublattice similar to Im3m H_3S with CH_4 intercalates. Positing an electronic genesis of the superconductivity, a model is presented in analogy with earlier work on superconductivity in Im3m H_3S, in which pairing is induced via purely electronic Coulomb interactions across the mean distance ζ between the S and H_4-tetrahedra enclosing C. Theoretical superconducting transition temperatures for I43m CSH_7 are derived as T_(C0) = (2/3)~(1/2)σ~(1/2)β/aζ, where β = 1247.4 A~2 K is a universal constant, σ is the participating charge fraction, and a is the lattice parameter. Analysis suggests persistent bulk superconductivity with a pressure-dependent σ, increasing from σ = 3.5, determined previously for Im3m H_3S, to σ = 7.5 at high pressure owing to additionally participating C-H bond electrons. With a and ζ determined by theoretical structure, T_(C0) = 283.6 ± 3.5 K is predicted at 267 ± 10 GPa, in excellent agreement (within uncertainty) with the corresponding experimental T_C = 287.7 ± 1.2 K. Pressure-induced variations in σ combined with experimental uncertainties in pressure yield overall average (T_C - T_(C0)) = (-0.8 ± 3.5) K.
机译:报道的碳质硫氢化物超导转变的重要特征 [Snider et al., Nature 585, 373 (2020)] 是异常突然的起始温度及其在高压下向室温的显着升高。迄今为止,关于超导组成和结构的理论和实验研究结果喜忧参半。与实验建议的CSH_x化学计量学一致的一种可能性是理论上发现的压缩 I43m CSH_7结构 [Sun et al., Phys. Rev. B 101, 174102 (2020)],它包含一个类似于 Im3m H_3S 的亚晶格,具有CH_4插层。假设超导性的电子成因,提出了一个模型,类似于早期关于Im3m H_3S超导性的工作,其中配对是通过纯电子库仑相互作用在S和H_4四面体之间的平均距离ζ中诱导的。 I43m CSH_7的理论超导转变温度推导为T_(C0)=(2/3)~(1/2)σ~(1/2)β/aζ, 其中 β = 1247.4 A~2 K 是通用常数,σ 是参与电荷分数,a 是晶格参数。分析表明,由于额外参与的 C-H 键电子,具有压力依赖性σ的持续体超导性,从先前为 Im3m H_3S 确定的 σ = 3.5 增加到高压下的 σ = 7.5。当 a 和 ζ 由理论结构确定时,T_(C0) = 283.6 ± 3.在267 ± 10 GPa时预测为5 K,与相应的实验T_C = 287.7 ± 1.2 K非常吻合±T_T_C σ(在不确定度范围内)。

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  • 来源
    《Journal of Applied Physics》 |2022年第1期|015105-1-015105-8|共8页
  • 作者单位

    Department of Physics, The College of William and Mary, Williamsburg, Virginia 23187, USA;

    Bell Labs Retired, Summit, New Jersey 07901, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 英语
  • 中图分类 应用物理学;
  • 关键词

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