Search Results - "Malevannaya, E. I."

  • Showing 1 - 5 results of 5
Refine Results
  1. 1

    High-Q trenched aluminum coplanar resonators with an ultrasonic edge microcutting for superconducting quantum devices by Zikiy, E. V., Ivanov, A. I., Smirnov, N. S., Moskalev, D. O., Polozov, V. I., Matanin, A. R., Malevannaya, E. I., Echeistov, V. V., Konstantinova, T. G., Rodionov, I. A.

    Published in Scientific reports (20-09-2023)
    “…Dielectric losses are one of the key factors limiting the coherence of superconducting qubits. The impact of materials and fabrication steps on dielectric…”
    Get full text
    Journal Article
  2. 2

    Towards highly efficient broadband superconducting quantum memory by Matanin, A. R, Gerasimov, K. I, Moiseev, E. S, Smirnov, N. S, Ivanov, A. I, Malevannaya, E. I, Polozov, V. I, Zikiy, E. V, Samoilov, A. A, Rodionov, I. A, Moiseev, S. A

    Published 03-03-2023
    “…Phys. Rev. Applied 19, 034011 2023 Microwave quantum memory promises advanced capabilities for noisy intermediate-scale superconducting quantum computers…”
    Get full text
    Journal Article
  3. 3

    Light-dressing of a diatomic superconducting artificial molecule by Fedorov, G. P, Yursa, V. B, Efimov, A. E, Shiianov, K. I, Dmitriev, A. Yu, Rodionov, I. A, Dobronosova, A. A, Moskalev, D. O, Pishchimova, A. A, Malevannaya, E. I, Astafiev, O. V

    Published 05-06-2020
    “…Phys. Rev. A 102, 013707 (2020) In this work, we irradiate a superconducting artificial molecule composed of two coupled tunable transmons with microwave light…”
    Get full text
    Journal Article
  4. 4

    Superconducting detector of IR single-photons based on thin WSi films by Seleznev, V. A, Divochiy, A, Vakhtomin, Yu. B, Morozov, P. V, Zolotov, P. I, Vasilev, D. D, Moiseev, K. M, Malevannaya, E. I, Smirnov, K. V

    Published 30-06-2016
    “…We have developed the deposition technology of WSi thin films 4 to 9 nm thick with high temperature values of superconducting transition (Tc~4 K). Based on…”
    Get full text
    Journal Article
  5. 5

    High-Q trenched aluminum coplanar resonators with an ultrasonic edge microcutting for superconducting quantum devices by Zikiy, E. V, Ivanov, A. I, Smirnov, N. S, Moskalev, D. O, Polozov, V. I, Matanin, A. R, Malevannaya, E. I, Echeistov, V. V, Konstantinova, T. G, Rodionov, I. A

    Published 28-06-2023
    “…Dielectric losses are one of the key factors limiting the coherence of superconducting qubits. The impact of materials and fabrication steps on dielectric…”
    Get full text
    Journal Article