Search Results - "Yakshina, E. A."

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  1. 1

    Observation of the Borromean Three-Body Förster Resonances for Three Interacting Rb Rydberg Atoms by Tretyakov, D B, Beterov, I I, Yakshina, E A, Entin, V M, Ryabtsev, I I, Cheinet, P, Pillet, P

    Published in Physical review letters (27-10-2017)
    “…Three-body Förster resonances at long-range interactions of Rydberg atoms were first predicted and observed in Cs Rydberg atoms by Faoro et al. [Nat. Commun…”
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    Three-Photon Laser Excitation of Single Rydberg Rubidium Atoms in an Optical Dipole Trap by Beterov, I. I., Yakshina, E. A., Tret’yakov, D. B., Al’yanova, N. V., Skvortsova, D. A., Suliman, G., Zagirov, T. R., Entin, V. M., Ryabtsev, I. I.

    “…Three-photon laser excitation of single rubidium atoms in an optical dipole trap (ODT) into the 37 P Rydberg state by laser radiation with wavelengths of 780,…”
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  3. 3

    Implementation of Single-Qubit Quantum Gates Based on a Microwave Transition in a Single Rubidium Atom in an Optical Dipole Trap by Beterov, I. I., Yakshina, E. A., Tretyakov, D. B., Entin, V. M., Al’yanova, N. V., Mityanin, K. Yu, Ryabtsev, I. I.

    “…The results of experiments on the implementation of single-qubit quantum gates with a single 87 Rb atom in an optical dipole trap with a wavelength of 850 nm…”
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  4. 4

    Observation of the Dipole Blockade Effect in Detecting Rydberg Atoms by the Selective Field Ionization Method by Yakshina, E. A., Tretyakov, D. B., Entin, V. M., Beterov, I. I., Ryabtsev, I. I.

    “…The dipole blockade effect at laser excitation of mesoscopic ensembles of Rydberg atoms lies in the fact that the excitation of one atom to a Rydberg state…”
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    Fast three-qubit Toffoli quantum gate based on the three-body Förster resonances in Rydberg atoms by Beterov, I I, Ashkarin, I N, Yakshina, E A, Tretyakov, D B, Entin, V M, Ryabtsev, I I, Cheinet, P., Pillet, P., Saffman, M

    “…We propose a scheme of fast three-qubit Toffoli quantum gate for ultracold neutral-atom qubits. The scheme is based on the Stark-tuned three-body Förster…”
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    Element base of quantum informatics I. Qubits of a quantum computer based on single atoms in optical traps by Ryabtsev, I. I., Beterov, I. I., Yakshina, E. A., Tretyakov, D. B., Entin, V. M., Neizvestny, I. G., Latyshev, A. V., Aseev, A. L.

    Published in Russian microelectronics (01-03-2017)
    “…A brief overview of the current state of the experimental research on the development of the element base of quantum computers with qubits based on single…”
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  9. 9

    Rabi oscillations at three-photon laser excitation of a single rubidium Rydberg atom in an optical dipole trap by Beterov, I. I, Yakshina, E. A, Suliman, G, Betleni, P. I, Prilutskaya, A. A, Skvortsova, D. A, Zagirov, T. R, Tretyakov, D. B, Entin, V. M, Bezuglov, N. N, Ryabtsev, I. I

    Published 02-10-2024
    “…Zh. Exper. Teor. Fiz. 166, 535 (2024) (in Russian) In an experiment on three-photon laser excitation $5S_{1/2} \to 5P_{3/2} \to 6S_{1/2} \to 37P_{3/2}$ of a…”
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    Observation of the Dipole Blockade Effect in Detecting Rydberg Atoms by the Selective Field Ionization Method by Yakshina, E. A, Tretyakov, D. B, Entin, V. M, Beterov, I. I, Ryabtsev, I. I

    Published 21-04-2020
    “…Journal of Experimental and Theoretical Physics, 130(2) (2020) 170-182 The dipole blockade effect at laser excitation of mesoscopic ensembles of Rydberg atoms…”
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  12. 12

    Application of adiabatic passage in Rydberg atomic ensembles for quantum information processing by Beterov, I. I, Tretyakov, D. B, Entin, V. M, Yakshina, E. A, Ryabtsev, I. I, Saffman, M, Bergamini, S

    Published 15-01-2020
    “…We review methods for coherently controlling Rydberg quantum states of atomic ensembles using Adiabatic Rapid Passage and Stimulated Raman Adiabatic Passage…”
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  13. 13

    Adiabatic passage of radiofrequency-assisted Forster resonances in Rydberg atoms for two-qubit gates and generation of Bell states by Beterov, I. I, Hamzina, G. N, Yakshina, E. A, Tretyakov, D. B, Entin, V. M, Ryabtsev, I. I

    Published 12-10-2017
    “…Phys. Rev. A 97, 032701 (2018) High-fidelity entangled Bell states are of great interest in quantum physics. Entanglement of ultracold neutral atoms in two…”
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  14. 14

    Spectroscopy of cold rubidium Rydberg atoms for applications in quantum information by Ryabtsev, I. I, Beterov, I. I, Tretyakov, D. B, Entin, V. M, Yakshina, E. A

    Published 24-05-2016
    “…Physics - Uspekhi 59(2) 196-208 (2016) Atoms in highly excited (Rydberg) states have a number of unique properties which make them attractive for applications…”
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    Simulated quantum process tomography of quantum gates with Rydberg superatoms by Beterov, I. I, Saffman, M, Yakshina, E. A, Tretyakov, D. B, Entin, V. M, Hamzina, G. N, Ryabtsev, I. I

    Published 04-05-2016
    “…J. Phys. B: At. Mol. Opt. Phys. 49 114007 (2016) We have numerically simulated quantum tomography of single-qubit and two-qubit quantum gates with qubits…”
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    Jaynes-Cummings dynamics in mesoscopic ensembles of Rydberg-blockaded atoms by Beterov, I. I, Andrijauskas, T, Tretyakov, D. B, Entin, V. M, Yakshina, E. A, Ryabtsev, I. I, Bergamini, S

    Published 31-10-2014
    “…We show that Jaynes-Cummings dynamics can be observed in mesoscopic atomic ensembles interacting with a classical electromagnetic field in the regime of…”
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    Quantum Information Processing on the Basis of Single Ultracold Atoms in Optical Traps by Ryabtsev, I. I., Mityanin, K. Yu, Beterov, I. I., Tretyakov, D. B., Entin, V. M., Yakshina, E. A., Al’yanova, N. V., Neizvestnii, I. G.

    “…A brief overview of experimental and theoretical studies on the use of single neutral atoms captured in arrays of optical dipole traps as qubits of a quantum…”
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    Spectroscopy of the three-photon laser excitation of cold Rubidium Rydberg atoms in a magneto-optical trap by Entin, V. M., Yakshina, E. A., Tretyakov, D. B., Beterov, I. I., Ryabtsev, I. I.

    “…The spectra of the three-photon laser excitation 5 S 1/2 → 5 P 3/2 → 6 S 1/2 nP of cold Rb Rydberg atoms in an operating magneto-optical trap based on…”
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    Coherent control of mesoscopic atomic ensembles for quantum information by Beterov, I. I, Saffman, M, Zhukov, V. P, Tretyakov, D. B, Entin, V. M, Yakshina, E. A, Ryabtsev, I. I, Mansell, C. W, MacCormick, C, Bergamini, S, Fedoruk, M. P

    Published 15-10-2013
    “…We discuss methods for coherently controlling mesoscopic atomic ensembles where the number of atoms varies randomly from one experimental run to the next. The…”
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