Projects funded by the NCN


Information on the principal investigator and host institution

Information of the project and the call

Keywords

Equipment

Delete all

Electronic Correlations, Superconductivity, and Quantum Fluctuations Combined: Theory and Quantitative Interpretation of Experiment

2021/41/B/ST3/04070

Keywords:

high-temperature superconductivity strong electronic correlations quantum spin and charge fluctuations theory of superconductivity high-Tc cuprates pseudogap heavy fermions

Descriptors:

  • ST3_6: Macroscopic quantum phenomena: superconductivity, superfluidity, etc.
  • ST3_8: Magnetism and strongly correlated systems

Panel:

ST3 - Condensed matter physics: structure, electronic properties, fluids, nanosciences, biological physics

Host institution :

Uniwersytet Jagielloński, Wydział Fizyki, Astronomii i Informatyki Stosowanej

woj.

Other projects carried out by the institution 

Principal investigator (from the host institution):

prof. Józef Spałek 

Number of co-investigators in the project: 6

Call: OPUS 21 - announced on 2021-03-15

Amount awarded: 807 890 PLN

Project start date (Y-m-d): 2021-12-15

Project end date (Y-m-d): 2024-12-14

Project duration:: 36 months (the same as in the proposal)

Project status: Project completed

Project description

Download the project description in a pdf file

Note - project descriptions were prepared by the authors of the applications themselves and placed in the system in an unchanged form.

Information in the final report

  • Publication in academic press/journals (11)
  • Book publications / chapters in book publications (1)
  1. Brief Perspective of High-Temperature Superconductivity in the Cuprates: Strong Correlations Combined with Superexchange Match Experiment
    Authors:
    J. Spałek
    Academic press:
    Acta Physica Polonica A (rok: 2023, tom: 143, strony: 2, pp. 169-179), Wydawca: Instytut Fizyki Polskiej Akademii Nauk
    Status:
    Published
    DOI:
    10.12693/APhysPolA.143.169 - link to the publication
  2. Towards Complementary Characterization of the Chemical Bond
    Authors:
    Maciej Hendzel, Maciej Fidrysiak, and Józef Spałek
    Academic press:
    J. Phys. Chem. Lett. (rok: 2022, tom: 13, strony: 10261−10266), Wydawca: Americal Chemical Society Publications
    Status:
    Published
    DOI:
    10.1021/acs.jpclett.2c02544 - link to the publication
  3. Electron–Hole Asymmetry of Quantum Collective Excitations in High-Tc Copper Oxides
    Authors:
    M. Fidrysiak
    Academic press:
    Acta Physica Polonica (rok: 2023, tom: 143, strony: 2, pp. 180-188), Wydawca: Instytut Fizyki Polskiej Akademii Nauk
    Status:
    Published
    DOI:
    10.12693/APhysPolA.143.180 - link to the publication
  4. Tuning topological superconductivity within the t-J-U model of twisted bilayer cuprates
    Authors:
    M. Fidrysiak, B. Rzeszotarski, J. Spałek
    Academic press:
    Physical Review B (rok: 2023, tom: 108, strony: 224509, pp. 1-13), Wydawca: American Physical Society
    Status:
    Published
    DOI:
    10.1103/PhysRevB.108.224509 - link to the publication
  5. Many-particle covalency, ionicity, and atomicity revisited for a few simple example molecules
    Authors:
    Maciej Hendzel, Maciej Fidrysiak and Jozef Spałek
    Academic press:
    Journal of Physics B: Atomic, Molecular and Optical Physics (rok: 2022, tom: 55, strony: 185101, pp. 1-13), Wydawca: Institute of Physcis Publishing
    Status:
    Published
    DOI:
    10.1088/1361-6455/ac8298 - link to the publication
  6. Thermodynamic and electrical transport properties of CeRhSb1− Te systems: Transition from Kondo insulating to the Griffiths and non-Fermi liquid states
    Authors:
    A. Ślebarski, J. Spałek, M. Fijałkowski
    Academic press:
    Journal of Magnetism and Magnetic Materials (rok: 2023, tom: 587, strony: 171239, pp. 1-11), Wydawca: Elsevier
    Status:
    Published
    DOI:
    10.1016/j.jmmm.2023.171239 - link to the publication
  7. Superconductivity in high-Tc and related strongly correlated systems from variational perspective: Beyond mean field theory
    Authors:
    J.Spałek, M.Fidrysiak, M.Zegrodnik, A.Biborski,
    Academic press:
    Physics Reports (rok: 2022, tom: 959,(2022), strony: 1-117), Wydawca: Elsevier
    Status:
    Published
    DOI:
    10.1016/j.physrep.2022.02.003 - link to the publication
  8. Superconductivity in high-Tc and related strongly correlated systems from variational perspective: Beyond mean field theory
    Authors:
    J.Spałek, M.Fidrysiak, M.Zegrodnik, A.Biborski,
    Academic press:
    Physics Reports (rok: 2022, tom: 959,(2022), strony: 1-117), Wydawca: Elsevier
    Status:
    Published
    DOI:
    10.1016/j.physrep.2022.02.003 - link to the publication
  9. Degree of Atomicity in the Chemical Bonding: Why Return to the H2 Molecule?
    Authors:
    M. Hendzel, J. Spałek
    Academic press:
    Acta Physica Polonica A (rok: 2023, tom: 143, strony: 2, pp. 189-194), Wydawca: Instytut Fizyki Polskiej Akademii Nauk
    Status:
    Published
    DOI:
    10.12693/APhysPolA.143.189 - link to the publication
  10. Many-particle covalency, ionicity, and atomicity revisited for a few simple example molecules
    Authors:
    Maciej Hendzel, Maciej Fidrysiak and Jozef Spałek
    Academic press:
    Journal of Physics B: Atomic, Molecular and Optical Physics (rok: 2022, tom: 55, strony: 185101, pp. 1-13), Wydawca: Institute of Physcis Publishing
    Status:
    Published
    DOI:
    10.1088/1361-6455/ac8298 - link to the publication
  11. Towards Complementary Characterization of the Chemical Bond
    Authors:
    Maciej Hendzel, Maciej Fidrysiak, and Józef Spałek
    Academic press:
    J. Phys. Chem. Lett. (rok: 2022, tom: 13, strony: 10261−10266), Wydawca: Americal Chemical Society Publications
    Status:
    Published
    DOI:
    10.1021/acs.jpclett.2c02544 - link to the publication
  1. Interparticle correlations and chemical bonding from physical side: covalency vs atomicity and ionicity
    Authors:
    E. Brocławik, M. Fidrysiak, M. Hendzel, J. Spałek
    Book:
    Advances in Quantum Chemistry - Polish Quantum Chemistry from Kołos to Now (rok: 2023, tom: 87, strony: 351-373), Wydawca: Academic Press
    Status:
    Published
    DOI:
    10.1016/bs.aiq.2023.02.002 - link to the publication