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62 results on '"Jernej Mravlje"'

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1. Influence of oxygen on electronic correlation and transport in iron in the Earth’s outer core

2. Spin Seebeck coefficient and spin-thermal diffusion in the two-dimensional Hubbard model

3. Skewed non-Fermi liquids and the Seebeck effect

4. Thermal conductivity and heat diffusion in the two-dimensional Hubbard model

5. Skewed non-Fermi liquids and the Seebeck effect

6. Unveiling the electronic transformations in the semi-metallic correlated-electron transitional oxide Mo8O23

7. Photoinduced phase transition and associated timescales in the excitonic insulator Ta2NiSe5

8. Spin diffusion and spin conductivity in the two-dimensional Hubbard model

9. Spin Seebeck coefficient and spin-thermal diffusion in the two-dimensional Hubbard model

10. BaOsO$_3$: A Hund's metal in the presence of strong spin-orbit coupling

11. Charge transport in the Hubbard model at high temperatures: Triangular versus square lattice

12. Electronic correlations and transport in iron at Earth’s core conditions

13. Photoemission and dynamical mean field theory study of electronic correlations in a t2g5 metal SrRhO3 thin film

14. Kibble-Zurek behavior in disordered Chern insulators

15. Conductivity in the Square Lattice Hubbard Model at High Temperatures: Importance of Vertex Corrections

16. Hall coefficient signals orbital differentiation in the Hund’s metal Sr2RuO4

17. Slow quenches in Chern insulator ribbons

18. Time-resolved reflectivity and Raman studies of the interplay of electronic orders in Mo8O23

19. Spin-orbit coupling and correlations in three-orbital systems

20. Spin-orbit and anisotropic strain effects on the electronic correlations in Sr2RuO4

21. Spin-Orbit Coupling and Electronic Correlations in Sr2RuO4

22. Slow quenches in two-dimensional time-reversal symmetric Z2 topological insulators

23. Spin-orbit coupling in three-orbital Kanamori impurity model and its relevance for transition-metal oxides

24. Erratum: Optical spectroscopy and the nature of the insulating state of rare-earth nickelates [Phys. Rev. B 92 , 155145 (2015)]

25. Strong Correlations from Hund’s Coupling

26. Electron-electron scattering and thermal conductivity of epsilon-iron at Earths core conditions

27. A new high-temperature quantum spin liquid with polaron spins

28. Low-energy physics of three-orbital impurity model with Kanamori interaction

29. Transport and Optical Conductivity in the Hubbard Model: A High-Temperature Expansion Perspective

30. Thermopower and Entropy: Lessons fromSr2RuO4

31. TRIQS/DFTTools: A TRIQS application for ab initio calculations of correlated materials

32. Quantum entanglement of space domains occupied by interacting electrons

33. Kondo effect in oscillating molecules

34. The Role of Hund’s Coupling in Correlated Metals

35. Le rôle du couplage de Hund dans les métaux corrélés

36. Optical spectroscopy and the nature of the insulating state of rare-earth nickelates

37. Electronic correlations, magnetism, and Hund's rule coupling in the ruthenium perovskitesSrRuO3andCaRuO3

38. Theoretical prediction of antiferromagnetism in layered perovskite Sr$_2$TcO$_4$

39. Band Structure and Terahertz Optical Conductivity of Transition Metal Oxides: Theory and Application to CaRuO$_3$

40. Photoemission and DMFT study of electronic correlations inSrMoO3: Effects of Hund's rule coupling and possible plasmonic sideband

41. Impact of electronic correlations on the equation of state and transport in $\epsilon$-Fe

42. Optical Response ofSr2RuO4Reveals Universal Fermi-Liquid Scaling and Quasiparticles Beyond Landau Theory

43. Low-Energy Electronic Properties of CleanCaRuO3: Elusive Landau Quasiparticles

44. Spin thermopower in the overscreened Kondo model

45. Non-Drude universal scaling laws for the optical response of local Fermi liquids

46. Extremely correlated Fermi liquid theory meets Dynamical mean-field theory: Analytical insights into the doping-driven Mott transition

47. Hallmark of strong electronic correlations in LaNiO3: Photoemission kink and broadening of fully occupied bands

48. Ground State of the Parallel Double Quantum Dot System

49. How bad metals turn good: spectroscopic signatures of resilient quasiparticles

50. Spin-thermopower in interacting quantum dots

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