Search Results - "Maznichenko, I V"

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  1. 1

    Nonlinear Decay of Quantum Confined Magnons in Itinerant Ferromagnets by Zakeri, Kh, Hjelt, A, Maznichenko, I V, Buczek, P, Ernst, A

    Published in Physical review letters (30-04-2021)
    “…Quantum confinement leads to the emergence of several magnon modes in ultrathin layered magnetic structures. We probe the lifetime of these quantum confined…”
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  2. 2

    Emerging Two-Dimensional Conductivity at the Interface between Mott and Band Insulators by Maznichenko, I V, Ostanin, S, Maryenko, D, Dugaev, V K, Sherman, E Ya, Buczek, P, Mertig, I, Kawasaki, M, Ernst, A

    Published in Physical review letters (24-05-2024)
    “…Intriguingly, conducting perovskite interfaces between ordinary band insulators are widely explored, whereas similar interfaces with Mott insulators are still…”
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  3. 3

    The emergence of magnetic ordering at complex oxide interfaces tuned by defects by Park, D.-S., Rata, A. D., Maznichenko, I. V., Ostanin, S., Gan, Y. L., Agrestini, S., Rees, G. J., Walker, M., Li, J., Herrero-Martin, J., Singh, G., Luo, Z., Bhatnagar, A., Chen, Y. Z., Tileli, V., Muralt, P., Kalaboukhov, A., Mertig, I., Dörr, K., Ernst, A., Pryds, N.

    Published in Nature communications (20-07-2020)
    “…Complex oxides show extreme sensitivity to structural distortions and defects, and the intricate balance of competing interactions which emerge at atomically…”
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  4. 4

    Exchange interaction and its tuning in magnetic binary chalcogenides by Vergniory, M. G., Otrokov, M. M., Thonig, D., Hoffmann, M., Maznichenko, I. V., Geilhufe, M., Zubizarreta, X., Ostanin, S., Marmodoro, A., Henk, J., Hergert, W., Mertig, I., Chulkov, E. V., Ernst, A.

    “…Using a first-principles Green's function approach we study magnetic properties of the magnetic binary tetradymite chalcogenides Bi sub(2)Se sub(3), Bi…”
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  5. 5

    Structural secrets of multiferroic interfaces by Meyerheim, H L, Klimenta, F, Ernst, A, Mohseni, K, Ostanin, S, Fechner, M, Parihar, S, Maznichenko, I V, Mertig, I, Kirschner, J

    Published in Physical review letters (23-02-2011)
    “…We present an experimental and theoretical study of the geometric structure of ultrathin BaTiO(3) films grown on Fe(001). Surface x-ray diffraction reveals…”
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  6. 6

    Topological character and magnetism of the Dirac state in Mn-doped Bi2Te3 by Henk, J, Flieger, M, Maznichenko, I V, Mertig, I, Ernst, A, Eremeev, S V, Chulkov, E V

    Published in Physical review letters (17-08-2012)
    “…First-principles and model calculations show that the Dirac surface state of the topological insulator Bi(2)Te(3) survives upon moderate Mn doping of the…”
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  7. 7

    Complex spin texture in the pure and Mn-doped topological insulator Bi2Te3 by Henk, J, Ernst, A, Eremeev, S V, Chulkov, E V, Maznichenko, I V, Mertig, I

    Published in Physical review letters (18-05-2012)
    “…Topological insulators are characterized by the presence of spin-momentum-locked surface states with Dirac points that span the fundamental bulk band gap. We…”
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  8. 8

    Tailoring magnetic interlayer coupling in La0.7Sr0.3MnO3/SrRuO3 superlattices by Ziese, M, Vrejoiu, I, Pippel, E, Esquinazi, P, Hesse, D, Etz, C, Henk, J, Ernst, A, Maznichenko, I V, Hergert, W, Mertig, I

    Published in Physical review letters (23-04-2010)
    “…The magnetic interlayer coupling in La0.7Sr0.3MnO3/SrRuO3 superlattices was investigated. High quality superlattices with ultrathin La0.7Sr0.3MnO3 and SrRuO3…”
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  9. 9

    Superconductivity at epitaxial LaTiO3–KTaO3 interfaces by Maryenko, D., Maznichenko, I. V., Ostanin, S., Kawamura, M., Takahashi, K. S., Nakamura, M., Dugaev, V. K., Sherman, E. Ya, Ernst, A., Kawasaki, M.

    Published in APL materials (01-06-2023)
    “…The design of epitaxial interfaces is a pivotal way to engineer artificial structures where new electronic phases can emerge. Here, we report a systematic…”
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  10. 10

    Externally controlled and switchable two-dimensional electron gas at the Rashba interface between ferroelectrics and heavy d metals by Aull, T., Maznichenko, I. V., Ostanin, S., Şaşıoğlu, E., Mertig, I.

    Published in Physical review research (01-11-2021)
    “…Strong spin-orbit coupling in noncentrosymmetric materials and interfaces results in remarkable physical phenomena, such as nontrivial spin textures, which may…”
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  11. 11

    Defect-induced magnetism in homoepitaxial SrTiO3 by Rata, A. D., Herrero-Martin, J., Maznichenko, I. V., Chiabrera, F. M., Dahm, R. T., Ostanin, S., Lee, D., Jalan, B., Buczek, P., Mertig, I., Ernst, A., Ionescu, A. M., Dörr, K., Pryds, N., Park, D.-S.

    Published in APL materials (01-09-2022)
    “…Along with recent advancements in thin-film technologies, the engineering of complex transition metal oxide heterostructures offers the possibility of creating…”
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  12. 12

    Tuning the structure of ultrathin BaTiO3 films on Me(001) (Me=Fe, Pd, Pt) surfaces by Meyerheim, H L, Ernst, A, Mohseni, K, Maznichenko, I V, Henk, J, Ostanin, S, Jedrecy, N, Klimenta, F, Zegenhagen, J, Schlueter, C, Mertig, I, Kirschner, J

    Published in Physical review letters (06-09-2013)
    “…Using surface x-ray diffraction in combination with ab initio calculations, we demonstrate that the atomic structure of ultrathin BaTiO3 (BTO) films grown on…”
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  13. 13

    Element specific hysteresis of La0.7Sr0.3MnO3—SrRuO3 (LSMO-SRO) heterostructures by Schäffer, A. F., Chotorlishvili, L., Maznichenko, I. V., Ernst, A., Dörr, K., Mertig, I., Berakdar, J.

    Published in APL materials (01-07-2018)
    “…The ferromagnetic oxides La0.7Sr0.3MnO3 (LSMO) and SrRuO3 (SRO) couple antiferromagnetically, leading to a canted spin-structure at the interface’s proximity…”
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  14. 14

    BaTiO3(001)-(2×1): surface structure and spin density by Meyerheim, H L, Ernst, A, Mohseni, K, Maznichenko, I V, Ostanin, S, Klimenta, F, Jedrecy, N, Feng, W, Mertig, I, Felici, R, Kirschner, J

    Published in Physical review letters (25-05-2012)
    “…Using surface x-ray diffraction and ab initio calculations we present a model of the BaTiO3(001)-(2×1) surface structure, which has not been considered so far…”
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  15. 15

    Ab initio study of magnetoelectricity in composite multiferroics by Fechner, M., Maznichenko, I. V., Ostanin, S., Ernst, A., Henk, J., Mertig, I.

    Published in Physica status solidi. B. Basic research (01-07-2010)
    “…The coexistence of magnetism and ferroelectricity in the same crystalline phase of a so‐called multiferroic (MF) material involves the opportunity of…”
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  16. 16

    Tilting, bending, and nonterminal sites in CO/Cu(001) by Thamankar, R, Meyerheim, H L, Ernst, A, Ostanin, S, Maznichenko, I V, Soyka, E, Mertig, I, Kirschner, J

    Published in Physical review letters (11-03-2011)
    “…Using scanning tunneling microscopy experiments in combination with first-principles calculations we have studied the geometric structure of the compressed…”
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  17. 17

    Wurtzite-type CoO nanocrystals in ultrathin ZnCoO films by Meyerheim, H L, Tusche, C, Ernst, A, Ostanin, S, Maznichenko, I V, Mohseni, K, Jedrecy, N, Zegenhagen, J, Roy, J, Mertig, I, Kirschner, J

    Published in Physical review letters (17-04-2009)
    “…Surface x-ray diffraction experiments reveal that, in cobalt-doped ZnO films two to five monolayers thick, Wurtzite-type CoO nanocrystals are coherently…”
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  18. 18

    First-principles study of manganese-stabilized hafnia by Maznichenko, I.V., Ostanin, S., Ernst, A., Mertig, I.

    “…We present a first-principles study of the electronic and magnetic properties of cubic hafnium dioxide stabilized by Mn. We find this material to be…”
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  19. 19

    Nonlinear Decay of Quantum Confined Magnons in Itinerant Ferromagnets by Zakeri, Kh, Hjelt, A, Maznichenko, I. V, Buczek, P, Ernst, A

    Published 09-02-2021
    “…Phys. Rev. Lett. 126, 177203 (2021) Quantum confinement leads to the emergence of several magnon modes in ultrathin layered magnetic structures. We probe the…”
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  20. 20

    Superconductivity at epitaxial LaTiO3-KTaO3 interfaces by Maryenko, D, Maznichenko, I. V, Ostanin, S, Kawamura, M, Takahashi, K. S, Nakamura, M, Dugaev, V. K, Sherman, E. Ya, Ernst, A, Kawasaki, M

    Published 15-05-2023
    “…APL Mater 11, 061102 (2023) Design of epitaxial interfaces is a pivotal way to engineer artificial structures where new electronic phases can emerge. Here we…”
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