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34 results on '"Margine, Elena R."'

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1. Stability-superconductivity map for compressed Na-intercalated graphite

2. First-principles design of ambient-pressure Mg$_x$B$_2$C$_2$ and Na$_x$BC superconductors

3. Efficient anisotropic Migdal-Eliashberg calculations with the Intermediate Representation basis and Wannier interpolation

4. Prospect of high-temperature superconductivity in layered metal borocarbides

5. The Wannier Function Software Ecosystem for Materials Simulations

7. BCS superconductivity in ionic hydrides using chemical capacitor setup

8. Electron-phonon physics from first principles using the EPW code

9. Thermodynamic stability of Li-B-C compounds from first principles

10. Silvanite AuAgTe$_4$: a rare case of gold superconducting material

11. $Ab~initio$ study of Li-Mg-B superconductors

12. Superconducting properties of MoTe$_2$ from the $ab~initio$ anisotropic Migdal-Eliashberg theory

13. Electronic, vibrational, and electron-phonon coupling properties in SnSe$_2$ and SnS$_2$ under pressure

14. Unusual pressure-induced periodic lattice distortion in SnSe$_2$

15. Towards predictive many-body calculations of phonon-limited carrier mobilities in semiconductors

16. Origin of superconductivity and latent charge density wave in NbS$_2$

17. Evolution of the topologically protected surface states in superconductor $\beta$-Bi$_{2}$Pd from the three-dimensional to the two-dimensional limit

18. EPW: Electron-phonon coupling, transport and superconducting properties using maximally localized Wannier functions

20. Silvanite AuAgTe4: a rare case of gold superconducting material

22. Silvanite AuAgTe4: a rare case of gold superconducting material.

26. Superconducting properties in doped 2M-WS2 from first principles.

27. Superconducting properties of MoTe2 from ab initio anisotropic Migdal-Eliashberg theory

29. Electronic, vibrational, and electron–phonon coupling properties in SnSe2 and SnS2 under pressure.

32. Towards predictive many-body calculations of phonon-limited carrier mobilities in semiconductors

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