Bounds on the superconducting transition temperature

被引:0
作者
Randeria, Mohit [1 ]
机构
[1] Ohio State Univ, Dept Phys, Columbus, OH 43210 USA
来源
MODERN PHYSICS LETTERS B | 2024年 / 38卷 / 34期
关键词
Superconductivity; strongly correlated electrons; flat bands; BCS-BEC crossover; SUPERFLUID DENSITY; CONDENSATION; INSULATOR; CROSSOVER; BEHAVIOR; STATE;
D O I
10.1142/S0217984924300047
中图分类号
O59 [应用物理学];
学科分类号
摘要
I summarize recent progress on obtaining rigorous upper bounds on superconducting transition temperature Tc in two dimensions independent of pairing mechanism or interaction strength. These results are derived by finding a general upper bound for the superfluid stiffness for a multi-band system with arbitrary interactions, with the only assumption that the external vector potential couples to the kinetic energy and not to the interactions. This bound is then combined with the universal relation between the superfluid stiffness and the Berezinskii-Kosterlitz-Thouless Tc in 2D. For parabolic dispersion, one obtains the simple result that kBTc <= EF/8, which has been tested in recent experiments. More generally, the bounds are expressed in terms of the optical spectral weight and lead to stringent constraints for the Tc of low-density, strongly correlated superconductors. Results for Tc bounds for models of flat-band superconductors, where the kinetic energy vanishes and the vector potential must couple to interactions, are briefly summarized. Upper bounds on Tc in 3D remains an open problem, and I describe how questions of universality underlie the challenges in 3D.
引用
收藏
页数:14
相关论文
共 50 条
  • [21] Enhancement of superconducting transition temperature near surface of bulk system
    Kaneyasu, Hirono
    Hasegawa, Yasumasa
    Nobukuni, Tetsu
    Makoshi, Kenji
    PHYSICA C-SUPERCONDUCTIVITY AND ITS APPLICATIONS, 2007, 460 : 1381 - 1383
  • [22] Superconducting Transition Temperature Modulation in NbN via EDL Gating
    E. Piatti
    A. Sola
    D. Daghero
    G. A. Ummarino
    F. Laviano
    J. R. Nair
    C. Gerbaldi
    R. Cristiano
    A. Casaburi
    R. S. Gonnelli
    Journal of Superconductivity and Novel Magnetism, 2016, 29 : 587 - 591
  • [23] Superconducting Transition Temperature of the Bose One-Component Plasma
    Zhang, Chao
    Capogrosso-Sansone, Barbara
    Boninsegni, Massimo
    Prokofev, Nikolay V.
    Svistunov, Boris V.
    PHYSICAL REVIEW LETTERS, 2023, 130 (23)
  • [24] Progress Towards a Universal Approach for Prediction of the Superconducting Transition Temperature
    Alarco, Jose A.
    Almutairi, Alanoud
    Mackinnon, Ian D. R.
    JOURNAL OF SUPERCONDUCTIVITY AND NOVEL MAGNETISM, 2020, 33 (08) : 2287 - 2292
  • [25] Upper bounds on the highest phonon frequency and superconducting temperature from fundamental physical constants
    Trachenko, K.
    Monserrat, B.
    Hutcheon, M.
    Pickard, Chris J.
    JOURNAL OF PHYSICS-CONDENSED MATTER, 2025, 37 (16)
  • [26] Unrelated BCS-like pairing pseudogap and critical superconducting transition temperature in various cuprate compounds
    Dzhumanov, S.
    Karimboev, E. X.
    Djumanov, Sh S.
    MODERN PHYSICS LETTERS B, 2018, 32 (18):
  • [27] FeSe-based superconductors with a superconducting transition temperature of 50 K
    Shi, M. Z.
    Wang, N. Z.
    Lei, B.
    Ying, J. J.
    Zhu, C. S.
    Sun, Z. L.
    Cui, J. H.
    Meng, F. B.
    Hang, C. S.
    Ma, L. K.
    Chen, X. H.
    NEW JOURNAL OF PHYSICS, 2018, 20
  • [28] TEMPERATURE GREEN'S FUNCTIONS IN FERMI SYSTEMS: THE SUPERCONDUCTING PHASE TRANSITION
    Komarova, M. V.
    Nalimov, M. Yu.
    Honkonen, J.
    THEORETICAL AND MATHEMATICAL PHYSICS, 2013, 176 (01) : 906 - 912
  • [29] Temperature Green’s functions in Fermi systems: The superconducting phase transition
    M. V. Komarova
    M. Yu. Nalimov
    J. Honkonen
    Theoretical and Mathematical Physics, 2013, 176 : 906 - 912
  • [30] Predicting the superconducting transition temperature of high-Temperature layered superconductors via machine learning
    Zhang, Yun
    Xu, Xiaojie
    PHYSICA C-SUPERCONDUCTIVITY AND ITS APPLICATIONS, 2022, 595