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A. Gurinovich

Publications and source records attributed to A. Gurinovich.

8 recordsLinked to original sources

Tolerances in Flux Compression Generator Design: Theory

A flux compression generator (FCG) is a device generating a high-power electro-magnetic pulse by compressing magnetic flux with the help of explosion. The physical properties of components and materials used for FCG manufacturing and available on the market (wires, explosives, liners (armatures), etc.) might differ from those originally used for FCG design. As a result, the output parameters of the manufactured generator (e.g. maximum output power) could deviate from the pre-calculated values. Simple formulas are derived to enable evaluation of change in output power delivered to a purely inductive load from a helical flux compression generator in case when the wire insulation thickness or the detonation velocity of explosive or load inductance $L_l$ are changed. The obtained formulas establish acceptable tolerances for FCG components produced by a third-party manufacturer. Design requirement is proposed to ensure minimal dependence of the output power delivered to the purely inductive load when its inductance is varied a bit. The proposed approach implies approximate equality of load inductance and the residual FCG inductance at the instant, when the output power is maximal.

physics.acc-ph

Towards High-Power Microwaves

In this paper, we review and compare HPM sources operating without a magnetic field to guide the electron beam that are capable of producing high-power microwave (HPM) pulses with a duration of about 100 ns. The proposed analysis summarizes multi-year research carried with three types of HPM sources: a split-cavity oscillator (SCO); an axial vircator; and a virtual cathode oscillator in Reflex Triode geometry. These options were simulated for electron beam energy $\sim$400 keV and for pulsers with demonstrated capability to provide high power microwave pulses with the required pulse duration. Designed sources were experimentally tested, and their advantages and weaknesses are discussed with respect to high output power, long pulse duration, and good operating stability.

physics.acc-ph

Half-and-half HFCG with double-end initiation

Design of helical flux compression generator with double-end initiation is described. The developed design approach makes it possible to increase the power in the load by 60\% and shorten the rise time of the pulse by 83\% in comparison with a conventional helical FCG that is made in the same dimensions but with the single-end initiation of explosive. When using an electro-explosive opening switch, the developed FCG allows one to increase the switched current by 35\%.

physics.plasm-ph

Generation of Medical X-ray and Terahertz Beams of Radiation Using Table-Top Accelerators

Theoretical and experimental studies of PXR and diffracted radiation of an oscillator in crystals combined with the development of VFEL generators with photonic crystals give a promising basis for creation of X-ray and THz sources using the same table-top accelerator. Multi-modal medical facility can be developed on the basis of one dedicated table-top electron accelerator of some tens of MeV energy. Such a system could find a lot of applications in medical practice and biomedical investigations.

physics.acc-ph

Electrodynamical properties of a "grid" volume resonator for travelling wave tube and backward wave oscillator

The electrodynamical properties of a volume resonator formed by a perodic structure built from the metallic threads inside a rectangular waveguide ("grid" volume resonator) is considered for travelling wave tube and backward wave oscillator operation. Peculiarities of passing of electromagnetic waves with different polarizations through such volume resonator are discussed.

physics.optics

Progress of the Volume FEL (VFEL) experiments in millimeter range

Use of non one-dimensional distributed feedback in VFEL gives possibility of frequency tuning in wide range. In present work dependence of lasing process on the angle between resonant diffraction grating grooves and direction of electron beam velocity is discussed.

physics.optics

First Lasing of Volume FEL (VFEL) at Wavelength Range $λ\sim $ 4-6 mm

First lasing of volume free electron laser (VFEL) is described. The generating system consists of two metal diffraction grating with different spatial periods. The first grating creates the conditions for Smith Purcell emission mechanism. The second grating provides the distributed feedback for emitted wave. The length of diffraction grating is 10 cm. Electron beam pulse with a time duration $τ\sim$ 10 ms has a sinusoidal form with the amplitude varied from 1 to ~10 kV. The measured microwave power reached the value of about 3-4 W in mm wavelength range. The generation stops at threshold current value. When the current tends to the threshold value, the region of generation tends to a narrow band near to 5 kV. At higher current values the radiation appears in electron energy range 5 - 7.5 KeV.

physics.optics