Отображение сетевого контента Отображение сетевого контента

Публикации

Патенты

  1. С. А. Моисеев, К. И. Герасимов, М. М. Миннегалиев, Р. В. Урманчеев, А. М. Желтиков, А. Б. Федотов, «Способ подавления квантовых шумов в оптической квантовой памяти на основе протокола восстановления подавленного фотонного эха в резонаторе», патент №2766051, 2022. 

2022 г.

  1. С. А. Моисеев, Н. C. Перминов, А. М. Желтиков, «Многорезонаторная квантовая память с одиночными атомами», Письма в ЖЭТФ, том 115, вып. 6, с. 353-359, (2022).

2021 г.

  1. Mitrofanov A.V. et al. Polarization and Spatial Mode Structure of Mid-Infrared-Driven Terahertz-to-Microwave Radiation // ACS Photonics. American Chemical Society, — 2021. — Vol. 8, № 7. P. 1988–1996.  Q1
  2. Kelmanson I.V. et al. In vivo dynamics of acidosis and oxidative stress in the acute phase of an ischemic stroke in a rodent model // Redox Biol. — 2021. — Vol. 48. P. 102178. Q1
  3. Zheltikov A.M. Laser filaments as pulsed antennas // Opt. Lett. — 2021. — Vol. 46, № 19. P. 4984. Q1
  4. Classen A. et al. Analysis of intensity correlation enhanced plasmonic structured illumination microscopy // Opt. Lett. — 2021. — Vol. 46, № 7. P. 1554. Q1
  5. Chebotarev A.S. et al. Single-beam dual-color alternate-pathway two-photon spectroscopy: Toward an optical toolbox for redox biology // Journal of Raman Spectroscopy. — 2021. — Vol. 52, № 9. P. 1552–1560. Q2
  6. Mitrofanov A.V. et al. High-harmonic-driven inverse Raman scattering // Opt. Lett. — 2021. — Vol. 46, № 13. P. 3219. Q2
  7. Maleki Y., Scully M.O., Zheltikov A.M. Quantum metrology with superposition spin coherent states: Insights from Fisher information // Phys. Rev. A. American Physical Society, — 2021. — Vol. 104, № 5. P. 053712. Q2
  8. Mitrofanov A.V. et al. Polarized coherent microwave supercontinua with a terawatt laser driver // Phys. Rev. A. American Physical Society, — 2021. — Vol. 104, № 4. P. 043522. Q2
  9. Maleki Y. et al. Natural and magnetically induced entanglement of hyperfine-structure states in atomic hydrogen // Phys. Rev. A. American Physical Society, — 2021. — Vol. 103, № 5. P. 052804.Q2
  10. Minnegaliev M.M. et al. Linear Stark effect in Y3Al5O12Tm3+ crystal and its application in the addressable quantum memory protocol // Phys. Rev. B. American Physical Society, — 2021. — Vol. 103, № 17. P. 174110. Q2
  11. Zheltikov A.M. In search of lost time: attosecond physics, petahertz optoelectronics, and quantum speed limit // Physics-Uspekhi. — 2021. — Vol. 64, № 4. P. 370–385. Q2
  12.  Mitrofanov A.V. et al. Lightwave engineering for on-site few-cycle pulse widths in high-peak-power laser–matter interaction optics // Optics Communications. — 2022. — Vol. 502. P. 127311. Q3
  13. Maleki Y., Zheltikov A.M. Perfect swap and transfer of arbitrary quantum states // Optics Communications. — 2021. — Vol. 496. P. 126870. Q3

2020 г.

  1. I. V. Fedotov and A. M. Zheltikov,  «All-Opticfl Brain Thermometry in Freely Moving Animals», ACS Photonics, Vol. 7, № 12. P. 3353–3360 (2020), Q1
  2. I. V. Fedotov, A.A.Voronin, S.A.Moiseev and A. M. Zheltikov, «Light and corona: guided-wave readout for coronavirus spike protein–host-receptor binding», Optics Letters, Vol. 45, No. 19  p. 5428-5431, (2020) , Q1
  3. A.A.Voronin and  A. M. Zheltikov, «Sub-half-cycle field transients from shock-wave-assisted soliton selfcompression», Scientific Reports,  Vol. 10, 12253, (2020) , Q1
  4. I. V. Fedotov and A. M. Zheltikov,  «Photonic-Crystal-Fiber Quantum Probes for High-Resolution Thermal Imaging», Phys. Rev. Applied, Vol. 13, № 4. P.  (2020), Q1
  5. A.A.Lanin, , A. B. Fedotov, and A. M. Zheltikov,  «Enhanced-contrast two-photon optogenetic pH sensing and pH-resolved brain imaging»,  Journal of Biophotonics,  ee202000301, DOI: 10.1002/jbio.202000301 (2020) , Q2
  6. A. B. Fedotov, and A. M. Zheltikov,  «Single-beam optogenetic multimodal χ (3)/χ (5) nonlinear microscopy and brain imaging», Journal of Raman Spectroscopy, Vol. 51 №10, 1942-1950, (2020) , Q2                                                                         
  7. A. M. Zheltikov,  «Spin cat-state family for Heisenberg-limit Metrology», Journal of the Optical Society of America B, Vol. 37, No. 4 P. 1021-1026, (2020), Q2
  8. A. M. Zheltikov,  «Запутанные фотоны для микроскопии живых систем: за пределами возможного?», Успехи физических наук, Том 190, № 7, 749-761, (2020) , Q2
  9. D.A.Sidorov-Birukov, A.A.Voronin, A.B.Fedotov   and  A. M. Zheltikov, «Relativistic Nonlinear Optical Phenomena in the Field of Subterawatt Laser Pulses», JETP Letters, Vol. 112, No. 1, 17–23, (2020), Q3
  10.  A.A.Voronin and  A. M. Zheltikov, «Photonic toolbox for fast real-time polymerase chain reaction», Laser Phys. Lett. , Vol. 17 p. 076202, (2020), Q3
  11. M.A.Smirnov, M.M.Minnegaliev, I. V. Fedotov, S.A.Moiseev and A. M. Zheltikov, «Влияние лазерного излучения вблизи 1.5 мкм на параметры фотолюминесценции ансамбля NV-центров в алмазе»,  Письма в ЖЭТФ , том 113, вып 1 с. 3-9,  (2021), Q3                                                                          

2019 г.

  1. I. V. Fedotov and A. M. Zheltikov, «Background-free two-photon fluorescence readout via a three-photon charge-state modulation of nitrogen-vacancy centers in diamond» Optics Letters 44, 3737 (2019).
  2. Y. Maleki and A. M. Zheltikov, «Linear entropy of multiqutrit nonorthogonal states,» Opt. Express 27, 8291–8307 (2019).
  3. N. L. Petrov, A. A. Voronin, A. B. Fedotov, and A. M. Zheltikov, «Ultrahigh-contrast cross-polarized entangled photon pairs from a strongly birefringent photonic-crystal fiber,» Appl. Phys. B 125, 54 (2019).
  4. A. M. Zheltikov, «Ultrafast nonlinear phenomena in fiber-optic photon-pair generation by ultrashort laser pulses,» Laser Phys. Lett. 16, 015402 (2019).
  5. N. L. Petrov, A. B. Fedotov, and A. M. Zheltikov, «High-brightness photon pairs and strongly antibunching heralded single photons from a highly nonlinear optical fiber,» Optics Communications 450, 304–307 (2019).
  6. Y. Maleki and A. M. Zheltikov, «Macroscopic tripartite entanglement of nitrogen-vacancy centers in diamond coupled to a superconducting resonator,» J. Opt. Soc. Am. B 36, 443–450 (2019).
  7. S. Blakley, X. Liu, I. Fedotov, I. Cojocaru, C. Vincent, M. Alkahtani, J. Becker, M. Kieschnick, T. Lühman, J. Meijer, P. Hemmer, A. Akimov, M. Scully, and A. Zheltikov, «Fiber-Optic Quantum Thermometry with Germanium-Vacancy Centers in Diamond,» ACS Photonics 6, 1690–1693 (2019).
  8. N. L. Petrov, A. A. Voronin, A. B. Fedotov, and A. M. Zheltikov, «Entropy- and purity-tailored broadband entanglement from vectorial four-wave mixing: Insights from pulse modes and classical-field dynamics,» Physical Review A 100, 033837 (2019).
  9. N. S. Perminov, D. Y. Tarankova, and S. A. Moiseev, «Programmable quantum motherboard for logical qubits,» Laser Phys. 29, 124016 (2019).
  10. Y. Maleki and A. M. Zheltikov, «A high-N00N output of harmonically driven cavity QED,» Sci Rep 9, 16780 (2019).
  11. M. A. Smirnov, K. V. Petrovnin, I. V. Fedotov, S. A. Moiseev, and A. M. Zheltikov, «Quantum random numbers from a fiber-optic photon-pair source,» Laser Physics Letters 16, 115402 (2019).
  12. N. S. Perminov, O. I. Bannik, L. R. Giliazov, K. S. Melnik, and D. Yu. Tarankova, «Statistical Evaluation of a Physical Random Number Generator,» Bull. Russ. Acad. Sci. Phys. 83, 374–376 (2019).

2018 г.

  1. Lanin A.A., Voronin A.A., Fedotov A.B. and Zheltikov A.M., «Coherent Raman spectroscopy of solid‐state broadband quantum memories», J. of Raman Spectroscopy 49(7) 1128-1135 (2018)
    DOI: 10.1002/jrs.5382
  2. Fan J.-W., Cojocaru I., Becker J., Fedotov I.V., Alkahtani M.H.A., Alajlan A., Blakley S., Rezaee M., Lyamkina A., Palyanov Y.N., Borzdov Y.M., Yang Y.-P., Zheltikov A.M., Hemmer P. and Akimov A.V., «Germanium-Vacancy Color Center in Diamond as a Temperature Sensor», ACS Photonics (2018).
    DOI: 10.1021/acsphotonics.7b01465
  3. Zheltikov A.M., «Enhanced-contrast optical readout in ultrafast broadband Raman quantum memories», Scientific Reports 8 13774 (2018)
    DOI: 10.1038/s41598-018-31226-7
  4. Zheltikov A.M., «Optical shock wave and photon-number conservation», Phys. Rev. A 98 043833 (2018)
    DOI: 10.1103/PhysRevA.98.043833
  5. Maleki Y. and Zheltikov A.M., «Witnessing quantum entanglement in ensembles of nitrogen–vacancy centers coupled to a superconducting resonator», Optics Express 26(14) 17849-17858 (2018)
    DOI: 10.1364/OE.26.017849
  6. Maleki Y. and Zheltikov A.M., «Recovery of maximally entangled quantum states by weak-measurement reversal», Laser Phys. Lett. 15, 056201 (2018)
    DOI: 10.1088/1612-202X/aa7377
  7. Voronin A.A., Mitrofanov A.V., Sidorov-Biryukov D.A., Fedotov A.B., Pugžlys A., Panchenko V.Y., Shumakova V., Ališauskas S., Baltuška A. and Zheltikov A.M., «Free-beam soliton self-compression in air», J. Opt. 20, 025504 (2018)
    DOI: 10.1088/2040-8986/aa9bcc
  8. Zhokhov P.A. and Zheltikov A.M., «Optical breakdown of solids by few-cycle laser pulses», Scientific Reports 8, (2018)
    DOI: 10.1038/s41598-017-18624-z
  9. Maleki Y. and Zheltikov A.M., «Generating maximally-path-entangled number states in two spin ensembles coupled to a superconducting flux qubit», Phys. Rev. A 97, 012312 (2018)
    DOI: 10.1103/PhysRevA.97.012312
  10. Perminov N.S., Tarankova D.Y. and Moiseev S.A., «Superefficient cascade multiresonator quantum memory», Laser Phys. Lett. 15, 125203 (2018).
    DOI: 10.1088/1612-202X/aae782
  11. Жёлтиков А.М., «Критика квантового разума: измерение, сознание, отложенный выбор и утраченная когерентность», УФН 188, 1119–1128 (2018)
    DOI: 10.3367/UFNr.2017.06.038155

2017 г.

  1. Petrov N.L., Voronin A.A., Fedotov A.B., and Zheltikov A.M., «Polarization map of correlated sideband generation in vectorial four-wave mixing», Appl. Phys. Lett. 110(18), 181108 (2017)
    DOI: 10.1063/1.4982209
  2. Ermakova Y.G., Lanin A.A., Fedotov I.V., Roshchin M., Kelmanson I.V., Kulik D., Bogdanova Y.A., Shokhina A.G., Bilan D.S., Staroverov D.B., Balaban P.M., Fedotov A.B., Sidorov-Biryukov D.A., Nikitin E.S., Zheltikov A.M. and Belousov V.V., «Thermogenetic neurostimulation with single-cell resolution», Nature Communications 8, 15362 (2017)
    DOI: 10.1038/ncomms15362
  3. Zheltikov A.M., «Phase matching as a gate for photon entanglement», Scientific Reports 7 46115 (2017)
    DOI: 10.1038/srep46115
  4. Smirnov M.A., Perminov N.S., Nigmatullin R.R., Talipov A.A., and Moiseev S.A., «Sequences of the ranged amplitudes as a universal method for fast noninvasive characterization of SPAD dark counts», Applied Optics 57(1), 57-61 (2017)
    DOI: 10.1364/AO.57.000057
  5. Voronin A.A., Zheltikov A.M., «The generalized Sellmeier equation for air», Scientific Reports 7 46111 (2017)
    DOI: 10.1038/srep46111
  6. Voronin A.A. and Zheltikov A.M., «Power-scalable subcycle pulses from laser filaments», Scientific Reports 7, srep36263 (2017)
    DOI: 10.1038/srep36263
  7. Zheltikov A.M., «Laser-induced filaments in the mid-infrared», J. Phys. B: At. Mol. Opt. Phys. 50(9) 092001 (2017)
    DOI: 10.1088/1361-6455/aa6109
  8. Герасимов К.И., Миннегалиев М.М., Урманчеев Р.В. и Моисеев С.А., «Эффект Штарка в кристалле Tm:YAG и адресная память на фотонном эхе», Тезисы WoS конференции «ФЭКС-2017», Калининград (2017)