Nomoev S.A.

Nomoev Sergei A.

Degree: Candidate of Sciences (PhD) in Technology

Deputy Head of Division

Отдел разработки перспективных проектов центра радиофотоники и свч-технологий института нанотехнологий в электронике, спинтронике и фотонике НИЯУ МИФИ

Research Fellow

Institute of Nuclear Electronics

Research Fellow

Лаборатория 2d наноматериалов в электронике, фотонике и спинтронике центра радиофотоники и свч-технологий института нанотехнологий в электронике, спинтронике и фотонике НИЯУ МИФИ
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Languages

english
russian
Works at MEPhI since 2016

Publication activity

3
h-index (Scopus)
2
h-index (РИНЦ)

Showing conferences for last 3 years

  1. Октябрь 2024 12th International Conference on Materials Science (ICMS2024) in the National University of Mongolia and Institute of Physics and Technology Report: A Proposal of Mach-Zehnder Interferometer
  2. Октябрь 2023 3rd Joint Chinese-Mongolian-Russian International Conference on Functional Materials. 11th International Conference on Materials Science (ICMS-2023) Report: Development, Fabrication and Spectral Characteristics of Photoconductive Antennas with Plasmonic Rectangular Nanorods and Nanoantennas for THz Generation

Повышение квалификации

January 09, 2024 — April 14, 2024 Phot1x: Silicon Photonics Design, Fabrication and Data Analysis (120 hours) The University of British Columbia
December 01, 2019 — December 11, 2019 CRESTEC CABL-9500C Nano Basic Lithography Procedure Training (50 hours)

Traineeships

Fraunhofer Institute for Ceramic Technologies and Systems, Dresden. Participated in the CeraCode project for high-temperature-resistant markings. The CeraCode marking solution enables high-temperature-resistant, machine-readable marking for hot-formed and press-hardened metal components. This makes it possible to implement end-to-end component identification and the networking of all elements of industrial production. Dr. rer. nat. Christoph Zeh, Optical Test Methods and Nanosensors.

LNIO University of Technology of Troyes, Troyes. We conducted experiments in the field of backscattering and forward scattering on silicon, and an article was written. The experiments showed the strong dependence of forward and backward scattering of light in the visible region of the spectrum by silicon nanoparticles on the method of their preparation. Silicon nanoparticles are created in two ways: by laser ablation and by the action of a relativistic electron beam. These properties of silicon nanoparticles should be taken into account when creating nanoantennas, metamaterials, and other nanophotonic devices with low dissipative losses and reflection. Professor P.-M. Adam.

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