Search Results - "Gayduchenko, I"

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  1. 1

    Tunnel field-effect transistors for sensitive terahertz detection by Gayduchenko, I., Xu, S. G., Alymov, G., Moskotin, M., Tretyakov, I., Taniguchi, T., Watanabe, K., Goltsman, G., Geim, A. K., Fedorov, G., Svintsov, D., Bandurin, D. A.

    Published in Nature communications (22-01-2021)
    “…The rectification of electromagnetic waves to direct currents is a crucial process for energy harvesting, beyond-5G wireless communications, ultra-fast…”
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    Journal Article
  2. 2

    Dual origin of room temperature sub-terahertz photoresponse in graphene field effect transistors by Bandurin, D. A., Gayduchenko, I., Cao, Y., Moskotin, M., Principi, A., Grigorieva, I. V., Goltsman, G., Fedorov, G., Svintsov, D.

    Published in Applied physics letters (02-04-2018)
    “…Graphene is considered as a promising platform for detectors of high-frequency radiation up to the terahertz (THz) range due to its superior electron mobility…”
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    Journal Article
  3. 3

    Viscous terahertz photoconductivity of hydrodynamic electrons in graphene by Kravtsov, M, Shilov, A L, Yang, Y, Pryadilin, T, Kashchenko, M A, Popova, O, Titova, M, Voropaev, D, Wang, Y, Shein, K, Gayduchenko, I, Goltsman, G N, Lukianov, M, Kudriashov, A, Taniguchi, T, Watanabe, K, Svintsov, D A, Adam, S, Novoselov, K S, Principi, A, Bandurin, D A

    Published in Nature nanotechnology (07-10-2024)
    “…Light incident upon materials can induce changes in their electrical conductivity, a phenomenon referred to as photoresistance. In semiconductors, the…”
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    Journal Article
  4. 4

    Photothermoelectric response in asymmetric carbon nanotube devices exposed to sub-terahertz radiation by Fedorov, G., Kardakova, A., Gayduchenko, I., Charayev, I., Voronov, B. M., Finkel, M., Klapwijk, T. M., Morozov, S., Presniakov, M., Bobrinetskiy, I., Ibragimov, R., Goltsman, G.

    Published in Applied physics letters (28-10-2013)
    “…We report on the voltage response of carbon nanotube devices to sub-terahertz (THz) radiation. The devices contain carbon nanotubes (CNTs), which are over…”
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    Journal Article
  5. 5
  6. 6

    Two-dimensional plasmons in lateral carbon nanotube network structures and their effect on the terahertz radiation detection by Ryzhii, V, Otsuji, T, Ryzhii, M, Leiman, V. G, Fedorov, G, Goltzman, G. N, Gayduchenko, I. A, Titova, N, Coquillat, D, But, D, Knap, W, Mitin, V, Shur, M. S

    Published 17-02-2016
    “…We consider the carrier transport and plasmonic phenomena in the lateral carbon nanotube (CNT) networks forming the device channel with asymmetric electrodes…”
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    Journal Article
  7. 7

    The interaction between nerve cells and carbon nanotube networks made by CVD process investigation by Bobrinetskiy, I. I., Seleznev, A. S., Gayduchenko, I. A., Fedorov, G. E., Domantovskiy, A. G., Presnyakov, M. Yu, Podchernyaeva, R. Ya, Mikhailova, G. R., Suetina, I. A.

    Published in Biophysics (Oxford) (01-05-2013)
    “…In this research we investigate neuroblastoma cells cultivated on single-walled carbon nanotubes networks made by CVD method on silicon substrates. The complex…”
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    Journal Article
  8. 8

    Towards the Development of Ultrafast Photodetectors Based on Graphene for the Next-generation Telecommunication Systems by Gayduchenko, I. A., An, P., Belosevich, V., Rybin, M., Kaurova, N., Kovalyuk, V., Belkin, M. E., Goltsman, G. N.

    “…Here, we report on our recent efforts to develop of a photodetector based on single-layer graphene two-terminal device on the sapphire substrate. Our detector…”
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    Conference Proceeding
  9. 9

    Neuronal differentiation of PC12 cells and mouse neural stem cells on carbon nanotube films by Posypanova, G. A., Gayduchenko, I. A., Moskaleva, E. Yu, Fedorov, G. E.

    Published in Cell and tissue biology (01-05-2016)
    “…In development of methods of stimulation of regeneration of nerve tissues and creation of new-generation bioelectronic devices, studying the interaction of…”
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    Journal Article
  10. 10

    Fundamental limits of few-layer NbSe$_2$ microbolometers at terahertz frequencies by Shein, K, Zharkova, E, Kashchenko, M. A, Kolbatova, A. I, Lyubchak, A, Elesin, L, Nguyen, E, Semenov, A, Charaev, I, Schilling, A, Goltsman, G. N, Novoselov, K. S, Gayduchenko, I, Bandurin, D. A

    Published 21-11-2023
    “…Nano Letter 24, 7, 2282 - 2288, 2024 The rapid development of infrared spectroscopy, observational astronomy, and scanning near-field microscopy has been…”
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    Journal Article
  11. 11

    Anomalous terahertz photoconductivity caused by the superballistic flow of hydrodynamic electrons in graphene by Kravtsov, M, Shilov, A. L, Yang, Y, Pryadilin, T, Kashchenko, M. A, Popova, O, Titova, M, Voropaev, D, Wang, Y, Shein, K, Gayduchenko, I, Goltsman, G. N, Lukianov, M, Kudriashov, A, Taniguchi, T, Watanabe, K, Svintsov, D. A, Principi, A, Adam, S, Novoselov, K. S, Bandurin, D. A

    Published 29-03-2024
    “…Nature Nanotechnology (2024) Light incident upon materials can induce changes in their electrical conductivity, a phenomenon referred to as photoresistance. In…”
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    Journal Article
  12. 12

    Resonant Terahertz Detection Using Graphene Plasmons by Bandurin, D. A, Svintsov, D, Gayduchenko, I, Xu, S. G, Principi, A, Moskotin, M, Tretyakov, I, Yagodkin, D, Zhukov, S, Taniguchi, T, Watanabe, K, Grigorieva, I. V, Polini, M, Goltsman, G, Geim, A. K, Fedorov, G

    Published 27-11-2018
    “…Nature Communications 9, 5392 (2018) Plasmons, collective oscillations of electron systems, can efficiently couple light and electric current, and thus can be…”
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    Journal Article