Theo dõi
Andrey D Andreev
Tiêu đề
Trích dẫn bởi
Trích dẫn bởi
Năm
Mode conversion in a magnetron with axial extraction of radiation
MI Fuks, NF Kovalev, AD Andreev, E Schamiloglu
IEEE Transactions on Plasma Science 34 (3), 620-626, 2006
972006
Pulsed Electron Beam Facilities (GESA) for Surface Treatment
V Engelko, G Mueller, A Andreev
Proc. of 10th International Conf. on Applied Charged Particle Accelerators …, 2001
232001
A simplified theory of microwave pulse compression
AD Andreev, EG Farr, E Schamiloglu
Circuit and Electromagnetic System Design Notes 57, 2008
192008
Particle-in-cell (PIC) simulation of CW industrial heating magnetron
AD Andreev, KJ Hendricks
Journal of Microwave Power and Electromagnetic Energy 44 (2), 114-124, 2010
182010
Computer simulations of frequency-and phase-locking of cavity magnetrons
AD Andreev
Journal of Electromagnetic Waves and Applications 32 (12), 1501-1518, 2018
142018
Elemental theory of a relativistic magnetron operation: Anode current
MI Fuks, E Schamiloglu
Journal of Directed Energy 3, 349-383, 2010
122010
ICEPIC simulation of a strapped nonrelativistic high-power CW UHF magnetron with a solid cathode operating in the space-charge limited regime
AD Andreev, KJ Hendricks
IEEE Transactions on plasma science 40 (6), 1551-1562, 2012
112012
Modeling and simulation of relativistic multiple electron beam generation with different energies from a single-cathode potential for high-power microwave sources
KN Islam, LD Ludeking, AD Andreev, S Portillo, AMN Elfrgani, ...
IEEE Transactions on Electron Devices 69 (3), 1380-1388, 2022
82022
Comprehensive particle-In-cell simulations of ten-vane microwave oven free-running 2.45 GHz “cooker” magnetron with ICEPIC and CST-PS codes
AD Andreev, SM Torrez, BE Nunan, E Schamiloglu
IEEE Transactions on Plasma Science 49 (11), 3509-3518, 2021
82021
Multicavity Magnetron With the “Rodded” Quasi-Metamaterial Cathode
AD Andreev, KJ Hendricks
IEEE Transactions on Plasma Science 41 (3), 620-627, 2013
82013
First multi-cavity magnetrons were built in NII-9 Leningrad during the Spring of 1937
AD Andreev, KJ Hendricks
Proc. IEEE Int. Conf. Orig. Evol. Cavity Magn., 71-75, 2010
7*2010
Elemental theory of a relativistic magnetron operation: Dispersion diagram
AD Andreev, KJ Hendricks, S Soh, M Fuks, E Schamiloglu
Journal of Directed Energy 5 (1), 1-41, 2013
62013
Metamaterial-like cathodes in multicavity magnetrons
AD Andreev, KJ Hendricks
IEEE Transactions on Plasma Science 40 (9), 2267-2273, 2012
62012
ICEPIC simulation of a strapped nonrelativistic high-power UHF magnetron with a transparent cathode operating in the explosive electron emission mode
AD Andreev, KJ Hendricks
IEEE Transactions on Plasma Science 40 (10), 2535-2547, 2012
62012
Investigation of the candidate divertor materials erosion at the powerful electron beam
V Engelko, A Andreev, T Burtseva, O Komarov, V Kovalev, B Ljublin, ...
Journal of nuclear materials 233, 818-822, 1996
61996
Modification of material surfaces by the pulsed electron beam facility “GESA”
G Müller, G Schumacher, D Strauß, V Engelko, A Andreev, V Kavaljov
1996 11th International Conference on High-Power Particle Beams 2, 809-812, 1996
61996
Pulsed electron beam facility GESA for surface treatment of materials
G Mueller, G Schumacher, D Strauss, V Engelko, A Andreev, O Komarov, ...
1996 11th International Conference on High-Power Particle Beams 1, 267-270, 1996
61996
Experimental measurements of intense relativistic electron beam parameters on the SINUS-6 high-current electron beam accelerator
KN Islam, AD Andreev, E Schamiloglu
Proc. EAPPC-BEAMS-MG Conference, 2021
52021
Rapid 3D prototyping and fabricating of slow-wave structures, including electromagnetic meta-material structures, for millimeter-wavelength and terahertz-frequency high-power …
AD Andreev, JG Moxness, MMKP Lach
US Patent 10,580,611, 2020
52020
Axial strapping of a multi-core (cascaded) magnetron
AD Andreev
US Patent 9,711,315, 2017
52017
Hệ thống không thể thực hiện thao tác ngay bây giờ. Hãy thử lại sau.
Bài viết 1–20