Search Results - "Sheverdyaeva, P. M"

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  1. 1

    Coexistence of multiple silicene phases in silicon grown on Ag(1 1 1) by Moras, P, Mentes, T O, Sheverdyaeva, P M, Locatelli, A, Carbone, C

    Published in Journal of physics. Condensed matter (07-05-2014)
    “…Silicene, the silicon equivalent of graphene, is attracting increasing scientific and technological attention in view of the exploitation of its exotic…”
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  2. 2

    Electronic and geometric structure of graphene/SiC(0001) decoupled by lithium intercalation by Bisti, F., Profeta, G., Vita, H., Donarelli, M., Perrozzi, F., Sheverdyaeva, P. M., Moras, P., Horn, K., Ottaviano, L.

    “…Graphene formation on top of SiC(0001) by decoupling the carbon buffer layer through lithium intercalation is investigated. Low-energy electron diffraction and…”
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  3. 3

    Highly anisotropic Dirac cones in epitaxial graphene modulated by an island superlattice by Rusponi, S, Papagno, M, Moras, P, Vlaic, S, Etzkorn, M, Sheverdyaeva, P M, Pacilé, D, Brune, H, Carbone, C

    Published in Physical review letters (07-12-2010)
    “…We present a new method to engineer the charge carrier mobility and its directional asymmetry in epitaxial graphene by using metal cluster superlattices…”
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  4. 4

    Electron Confinement Effects in Silver Films Embedded between Graphene and Metallic Substrates by Ferrari, L, Grimaldi, I, Sheverdyaeva, P. M, Kundu, Asish K, Moras, P, Papagno, M, Carbone, C, Pacilè, D

    Published in Journal of physical chemistry. C (18-04-2019)
    “…We examine the electronic structure of Ag deposits intercalated between graphene and Co(0001). Angle-resolved photoemission spectroscopy measurements reveal…”
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  5. 5

    Anisotropic electronic conduction in metal nanofilms grown on a one-dimensional surface superstructure by Nagamura, Naoka, Hobara, Rei, Uetake, Tomoya, Hirahara, Toru, Ogawa, Manami, Okuda, Taichi, He, Ke, Moras, P., Sheverdyaeva, P. M., Carbone, C., Kobayashi, Katsuyoshi, Matsuda, Iwao, Hasegawa, Shuji

    “…We performed in situ conductivity measurements by multiple microscopic probes of Ag nanofilms grown on a periodic array of indium atomic wires on Si(111)…”
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    Spin-Dependent π π Gap in Graphene on a Magnetic Substrate by Sheverdyaeva, P. M., Bihlmayer, G., Cappelluti, E., Pacilé, D., Mazzola, F., Atodiresei, N., Jugovac, M., Grimaldi, I., Contini, G., Kundu, Asish K., Vobornik, I., Fujii, J., Moras, P., Carbone, C., Ferrari, L.

    Published in Physical review letters (28-06-2024)
    “…Here, we present a detailed analysis of the electronic properties of graphene/Eu/Ni(111). By using angle- and spin-resolved photoemission spectroscopy and ab…”
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  9. 9

    Controlling the topology of Fermi surfaces in metal nanofilms by Ogawa, M, Gray, A, Sheverdyaeva, P M, Moras, P, Hong, H, Huang, L-C, Tang, S-J, Kobayashi, K, Carbone, C, Chiang, T-C, Matsuda, I

    Published in Physical review letters (13-07-2012)
    “…The properties of metal crystals are governed by the electrons of the highest occupied states at the Fermi level and determined by Fermi surfaces, the Fermi…”
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  10. 10

    Spin-Dependent ππ^{} Gap in Graphene on a Magnetic Substrate by Sheverdyaeva, P M, Bihlmayer, G, Cappelluti, E, Pacilé, D, Mazzola, F, Atodiresei, N, Jugovac, M, Grimaldi, I, Contini, G, Kundu, Asish K, Vobornik, I, Fujii, J, Moras, P, Carbone, C, Ferrari, L

    Published in Physical review letters (28-06-2024)
    “…We present a detailed analysis of the electronic properties of graphene/Eu/Ni(111). By using angle- and spin-resolved photoemission spectroscopy and ab initio…”
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  11. 11

    Topologization of β-antimonene on Bi2Se3 via proximity effects by Holtgrewe, K., Mahatha, S. K., Sheverdyaeva, P. M., Moras, P., Flammini, R., Colonna, S., Ronci, F., Papagno, M., Barla, A., Petaccia, L., Aliev, Z. S., Babanly, M. B., Chulkov, E. V., Sanna, S., Hogan, C., Carbone, C.

    Published in Scientific reports (03-09-2020)
    “…Topological surface states usually emerge at the boundary between a topological and a conventional insulator. Their precise physical character and spatial…”
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  12. 12

    Effect of the valence state on the band magnetocrystalline anisotropy in two-dimensional rare-earth/noble-metal compounds by Blanco-Rey, M., Castrillo-Bodero, R., Ali, K., Gargiani, P., Bertran, F., Sheverdyaeva, P. M., Ortega, J. E., Fernandez, L., Schiller, F.

    Published in Physical review research (01-03-2022)
    “…In intermetallic compounds with zero orbital momentum (L=0) the magnetic anisotropy and the electronic band structure are interconnected. Here, we investigate…”
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  13. 13

    Electronic structure of epitaxial graphene grown on stepped Pt(997) by Pisarra, M., Pacilé, D., Moras, P., Sheverdyaeva, P. M., Sindona, A., Papagno, M., Carbone, C.

    “…Angle-resolved photoemission spectroscopy, low-energy electron diffraction, and density functional theory calculations were employed to investigate the…”
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  14. 14

    Magnetic decoupling of ferromagnetic metals through a graphene spacer by Grimaldi, I., Papagno, M., Ferrari, L., Sheverdyaeva, P.M., Mahatha, S.K., Pacilé, D., Carbone, C.

    “…We study the magnetic coupling between different ferromagnetic metals (FMs) across a graphene (G) layer, and the role of graphene as a thin covalent spacer…”
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  15. 15

    Magnetostatic and magneto-optical properties of Co-based amorphous ribbons by Gan'shina, E.A., Perov, N.S., Kochneva, M.Yu, Sheverdyaeva, P.M., Kim, C.G., Kim, C.O.

    “…We have investigated the modification of the magneto-optical and magnetostatic properties on weak-field-annealed Co-based amorphous ribbon with thermomagnetic…”
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  16. 16

    Electronic structure of graphene/Co interfaces by Pacilé, D., Lisi, S., Di Bernardo, I., Papagno, M., Ferrari, L., Pisarra, M., Caputo, M., Mahatha, S. K., Sheverdyaeva, P. M., Moras, P., Lacovig, P., Lizzit, S., Baraldi, A., Betti, M. G., Carbone, C.

    “…Photoemission, from core levels and valence band, and low-energy electron diffraction (LEED) have been employed to investigate the electronic and structural…”
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  17. 17

    Hybridization of graphene and a Ag monolayer supported on Re(0001) by Papagno, M., Moras, P., Sheverdyaeva, P. M., Doppler, J., Garhofer, A., Mittendorfer, F., Redinger, J., Carbone, C.

    “…We have investigated the electronic structure of graphene supported on Re(0001) before and after the intercalation of one monolayer of Ag by means of…”
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  18. 18

    Spin-dependent $\pi$$\pi^{\ast}$ gap in graphene on a magnetic substrate by Sheverdyaeva, P. M, Bihlmayer, G, Cappelluti, E, Pacilé, D, Mazzola, F, Atodiresei, N, Jugovac, M, Grimaldi, I, Contini, G, Kundu, A. K, Vobornik, I, Fujii, J, Moras, P, Carbone, C, Ferrari, L

    Published 27-04-2024
    “…Phys. Rev. Lett. 132, 266401 (2024) We present a detailed analysis of the electronic properties of graphene/Eu/Ni(111). By using angle and spin-resolved…”
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  19. 19

    Magnetization-dependent Rashba splitting of quantum well states at the Co/W interface by Moras, P, Bihlmayer, G, Sheverdyaeva, P M, Mahatha, S K, Papagno, M, Sanchez-Barriga, J, Rader, O, Novinec, L, Gardonio, S, Carbone, C

    “…Exchange and Rashba spin-orbit interactions are expected to couple at ferromagnetic-metal/heavy-metal interfaces and influence their electronic structure. We…”
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  20. 20

    Dilute magnetic semiconductor (In,Mn)Sb: Transport and magnetic properties by Ivanov, V.A., Pashkova, O.N., Sanygin, V.P., Sheverdyaeva, P.M., Prudnikov, V.N., Perov, N.S., Padalko, A.G.

    “…The magnetotransport and magnetostatic properties of synthesized dilute magnetic semiconductors (DMS) In x Mn 1− x Sb were studied. The samples with…”
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