Search Results - "Baeva, E. M."

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  1. 1

    Universal Bottleneck for Thermal Relaxation in Disordered Metallic Films by Baeva, E. M., Titova, N. A., Kardakova, A. I., Piatrusha, S. U., Khrapai, V. S.

    Published in JETP letters (2020)
    “…We study the heat relaxation in current biased metallic films in the regime of strong electron–phonon coupling. A thermal gradient in the direction normal to…”
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  2. 2

    Signatures of Surface Magnetic Disorder in Niobium Films by Samsonova, A.S., Zolotov, P.I., Baeva, E.M., Lomakin, A.I., Titova, N.A., Kardakova, Anna I., Goltsman, G.N.

    “…We present our studies on the evolution of the normal and superconducting properties with thickness of thin Nb films with a low level of non-magnetic disorder…”
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  3. 3

    Natural width of the superconducting transition in epitaxial TiN films by Baeva, E. M, Kolbatova, A. I, Titova, N. A, Saha, S, Boltasseva, A, Bogdanov, S, Shalaev, V. M, Semenov, A. V, Goltsman, G. N, Khrapai, V. S

    Published 02-10-2024
    “…Supercond. Sci. Technol. 37, 105017 (2024) We investigate the effect of various fluctuation mechanisms on the DC resistance in superconducting devices based on…”
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  4. 4

    Evidence of the disorder-independent electron-phonon scattering time in thin NbN films by Lomakin, A. I, Baeva, E. M, Triznova, A. D, Titova, N. A, Zolotov, P. I, Semenov, A. V, Sunegin, D. E, Lubenchenko, A. V, Kolbatova, A. I, Goltsman, G. N

    Published 09-12-2022
    “…We report on experimental study of the effect of disorder on electronic parameters and inelastic scattering mechanisms in ultrathin superconducting NbN films,…”
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  5. 5

    Thermal relaxation in metal films limited by diffuson lattice excitations of amorphous substrates by Baeva, E. M, Titova, N. A, Veyrat, L, Sacépé, B, Semenov, A. V, Goltsman, G. N, Kardakova, A. I, Khrapai, V. S

    Published 18-05-2021
    “…Phys. Rev. Applied 15, 054014 (2021) Here we examine the role of the amorphous insulating substrate in the thermal relaxation in thin NbN, InO$_x$, and Au/Ni…”
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  6. 6

    Universal bottleneck for thermal relaxation in disordered metallic films by Baeva, E. M, Titova, N. A, Kardakova, A. I, Piatrusha, S. U, Khrapai, V. S

    Published 06-12-2019
    “…JETP Letters 111 (2), 104 (2020) We study the heat relaxation in current biased metallic films in the regime of strong electron-phonon coupling. A thermal…”
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  7. 7

    Signature of the Reduced Sound Velocity in Thin NbN Films by Baeva, Elmira, Soldatenkova, Maria, Titova, Nadezhda, Kolbatova, Anna Igorevna, Gol'tsman, Gregory

    “…Here, we investigate thermal transport and phonon dynamics in the 30-nm thick NbN device. By measuring the thermal resistance <inline-formula><tex-math…”
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  8. 8

    Superconductivity behavior in epitaxial TiN films points at surface magnetic disorder by Saveskul, N. A, Titova, N. A, Baeva, E. M, Semenov, A. V, Lubenchenko, A. V, Saha, S, Reddy, H, Bogdanov, S. I, Marinero, E. E, Shalaev, V. M, Boltasseva, A, Khrapai, V. S, Kardakova, A. I, Goltsman, G. N

    Published 05-11-2019
    “…Phys. Rev. Applied 12, 054001 (2019) We analyze the evolution of the normal and superconducting electronic properties in epitaxial TiN films, characterized by…”
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  9. 9

    Thermal properties of NbN single-photon detectors by Baeva, E. M, Sidorova, M. V, Korneev, A. A, Smirnov, K. V, Divochy, A. V, Morozov, P. V, Zolotov, P. I, Vakhtomin, Yu. B, Semenov, A. V, Klapwijk, T. M, Khrapai, V. S, Goltsman, G. N

    Published 01-01-2019
    “…Phys. Rev. Applied 10, 064063 (2018) We investigate thermal properties of a NbN single-photon detector capable of unit internal detection efficiency. Using an…”
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  10. 10

    Slow electron-phonon relaxation controls the dynamics of the superconducting resistive transition by Baeva, E. M, Kolbatova, A. I, Titova, N. A, Saha, S, Boltasseva, A, Bogdanov, S, Shalaev, V. M, Semenov, A. V, Levchenko, A, Goltsman, G. N, Khrapai, V. S

    Published 13-02-2022
    “…Phys. Rev. B 110, 104519 (2024) We investigate the temporal and spatial scales of resistance fluctuations ($R$-fluctuations) at the superconducting resistive…”
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