Zobrazeno 1 - 10
of 17
pro vyhledávání: '"Ilya Besedin"'
Autor:
Ilya Besedin, Alexey P Menushenkov
Publikováno v:
EPJ Quantum Technology, Vol 5, Iss 1, Pp 1-16 (2018)
Abstract We investigate analytically the coupling of a coplanar waveguide resonator to a coplanar waveguide feedline. Using a conformal mapping technique we obtain an expression for the characteristic mode impedances and coupling coefficients of an a
Externí odkaz:
https://doaj.org/article/f6332a4d24c844dfaf6cf7c894abfc5e
Autor:
Dmitry O. Moskalev, Alina A. Dobronosova, Alexander N. Poddubny, N. N. Abramov, Ilya A. Rodionov, Ivan Tsitsilin, Maxim A. Gorlach, Ilya Besedin, Alexey R. Matanin, Nikita S. Smirnov, Alexey V. Ustinov, I. N. Moskalenko
Publikováno v:
Physical Review B. 103
Topological photonics enables resilient routing and localization of light. Of special interest are topological states of quantum light promising disorder-robust quantum correlations. Here, the authors design and fabricate a one-dimensional dimerized
Autor:
Alexey V. Ustinov, A. Grigor’ev, Ivan Tsitsilin, N. N. Abramov, A. A. Pishchimova, I. N. Moskalenko, Ilya Besedin, A. A. Dobronosova, Ilya A. Rodionov, G. S. Mazhorin, Dmitry O. Moskalev
Publikováno v:
JETP Letters. 110:574-579
The spectral and temporal characteristics of a fluxonium qubit coupled to a coplanar resonator on a chip have been experimentally studied. The system has been implemented as a planar integral electric circuit, where the fluxonium qubit itself consist
We report a detailed theoretical study of a coherent macroscopic quantum-mechanical phenomenon - quantum beats of a single magnetic fluxon trapped in a two-cell SQUID of high kinetic inductance. We calculate numerically and analytically the low-lying
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::68615126837ae7c4bc5424cdfe3f9f6b
Publikováno v:
FIFTH INTERNATIONAL CONFERENCE ON QUANTUM TECHNOLOGIES (ICQT-2019).
Currently, the applications of medium-scale systems composed of superconducting qubits are mostly limited to testing basic principles of quantum computation, demonstrating those as proof-of-concept designs and developing scalable software and hardwar
Publikováno v:
Quantum Electronics. 48:880-885
Publikováno v:
Applied Physics Letters. 119:194001
The superconducting fluxonium circuit is an RF-SQUID-type flux qubit that uses a large inductance built from an array of Josephson junctions or a high kinetic inductance material. This inductance suppresses charge sensitivity exponentially and flux s
Autor:
Alexey Zozulya, Ivan A. Zaluzhnyy, Michael Sprung, Marcus Scheele, Ivan A. Vartanyants, Ilya Besedin, Max Rose, Oleg Gorobtsov, Alexander André, Ruslan P. Kurta, Frank Schreiber, Petr Skopintsev
Publikováno v:
Nano letters 17(6), 3511-3517 (2017). doi:10.1021/acs.nanolett.7b00584
Nano letters 17(6), 3511 - 3517 (2017). doi:10.1021/acs.nanolett.7b00584
We show that the combination of X-ray scatteringwith a nanofocused beam and X-ray cross correlation analysis is anefficient way for the full structural characterization of
We show that the combination of X-ray scatteringwith a nanofocused beam and X-ray cross correlation analysis is anefficient way for the full structural characterization of
Publikováno v:
Crystallography Reports. 59:323-330
Oblique X-ray diffraction images of individual dislocations in the symmetric Laue geometry from a plane-parallel silicon plate have been calculated based on the Takagi-Taupin equations and analyzed. Computer simulation is used to develop a general ma
Autor:
Axel Rosenhahn, Ivan A. Vartanyants, Petr Skopintsev, Tobias Senkbeil, Max Rose, Christoph Rumancev, Andreas von Gundlach, Jens Viefhaus, Dmitry Dzhigaev, Susan Stuhr, Ilya Besedin
Ptychographic imaging with soft X-rays, especially in the water window energy range, suffers from limited detector dynamic range that directly influences the maximum spatial resolution achievable. High-dynamic-range data can be obtained by multiple e
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::ec4428600a7e4cd330d3d076d23c7e47