753 research outputs found

    1D simulation of runaway electrons generation in pulsed high-pressure gas discharge

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    The results of theoretical modelling of runaway electron generation in the high-pressure nanosecond pulsed gas discharge are presented. A novel hybrid model of gas discharge has been successfully built. Hydrodynamic and kinetic approaches are used simultaneously to describe the dynamics of different components of low-temperature discharge plasma. To consider motion of ions and low-energy (plasma) electrons the corresponding equations of continuity with drift-diffusion approximation are used. To describe high-energy (runaway) electrons the Boltzmann kinetic equation is included. As a result of the simulation we obtained spatial and temporal distributions of charged particles and electric field in a pulsed discharge. Furthermore, the energy spectra calculated runaway electrons in different cross-sections, particularly, the discharge gap in the anode plane. It is shown that the average energy of fast electrons (in eV) in the anode plane is usually slightly higher than the instantaneous value of the applied voltage to the gap (in V)

    Why do electrons with "anomalous energies" appear in high-pressure gas discharges?

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    Experimental studies connected with runaway electron beams generation convincingly shows the existence of electrons with energies above the maximum voltage applied to the discharge gap. Such electrons are also known as electrons with “anomalous energies”. We explain the presence of runaway electrons having so-called “anomalous energies” according to physical kinetics principles, namely, we describe the total ensemble of electrons with the distribution function. Its evolution obeys Boltzmann kinetic equation. The dynamics of self-consistent electromagnetic field is taken into the account by adding complete Maxwell’s equation set to the resulting system of equations. The electrodynamic mechanism of the interaction of electrons with a travelling-wave electric field is analyzed in details. It is responsible for the appearance of electrons with high energies in real discharges

    Theoretical simulation of the picosecond runaway-electron beam in coaxial diode filled with SF6 at atmospheric pressure

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    This paper presents detailed results of gas discharge theoretical simulation and the explanation of probabilistic mechanism of fast-electrons generation. Within the framework of a hybrid mathematical model, the hydrodynamic and the kinetic approaches are used simultaneously in order to describe the dynamics of different components of a low-temperature discharge plasma. The breakdown of a coaxial diode occurs in the form of a dense plasma region expanding from the cathode. On this background there is a formation of runaway electrons that are initiated by the ensemble of plasma electrons generated in the region of locally enhanced electric field within the front of the dense plasma. It is shown that the power spectrum of fast electrons in the discharge contains the group of electrons with the so-called “anomalous” energies. Comparison of the calculation results with the existent experimental data gives a good agreement for all major process parameters

    Current Trends in the Development of Creative Industries. Musical Minimalism in Modern Cinema

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    В ŃŃ‚Đ°Ń‚ŃŒĐ” Ń€Đ°ŃŃĐŒĐ°Ń‚Ń€ĐžĐČĐ°Đ”Ń‚ŃŃ ĐżĐŸĐœŃŃ‚ĐžĐ” «тĐČĐŸŃ€Ń‡Đ”ŃĐșОД/ĐșрДатОĐČĐœŃ‹Đ” ĐžĐœĐŽŃƒŃŃ‚Ń€ĐžĐžÂ» Đž Ń‚Đ” ĐœĐ°ĐżŃ€Đ°ĐČĐ»Đ”ĐœĐžŃ, ĐșĐŸŃ‚ĐŸŃ€Ń‹Đ” Đș ĐœĐžĐŒ ĐŸŃ‚ĐœĐŸŃŃŃ‚ŃŃ. ОпосыĐČĐ°Đ”Ń‚ŃŃ ĐŒĐ”Ń…Đ°ĐœĐžĐ·ĐŒ ŃŃƒŃ‰Đ”ŃŃ‚ĐČĐŸĐČĐ°ĐœĐžŃ ĐșрДатОĐČĐœŃ‹Ń… ĐžĐœĐŽŃƒŃŃ‚Ń€ĐžĐč ĐČ ĐœĐ°ŃˆĐ” ĐČŃ€Đ”ĐŒŃ Đž ох Đ·ĐœĐ°Ń‡Đ”ĐœĐžĐ” ĐČ ŃĐŸŃ†ĐžĐŸĐșŃƒĐ»ŃŒŃ‚ŃƒŃ€ĐœĐŸĐč праĐșтоĐșĐ”. ХрДЎО ĐœĐ°ĐżŃ€Đ°ĐČĐ»Đ”ĐœĐžĐč ĐșрДатОĐČĐœŃ‹Ń… ĐžĐœĐŽŃƒŃŃ‚Ń€ĐžĐč ĐČĐ°Đ¶ĐœĐŸĐ” ĐŒĐ”ŃŃ‚ĐŸ Đ·Đ°ĐœĐžĐŒĐ°Đ”Ń‚ ĐșĐžĐœĐ”ĐŒĐ°Ń‚ĐŸĐłŃ€Đ°Ń„. В ĐșачДстĐČĐ” ĐżŃ€ĐžĐŒĐ”Ń€Đ° Đ°ĐșŃ‚ŃƒĐ°Đ»ŃŒĐœŃ‹Ń… ĐșĐžĐœĐŸŃ€Đ°Đ±ĐŸŃ‚ Đ°ĐČŃ‚ĐŸŃ€ ŃƒĐŽĐ”Đ»ŃĐ”Ń‚ ĐČĐœĐžĐŒĐ°ĐœĐžĐ” тĐČĐŸŃ€Ń‡Đ”ŃŃ‚ĐČу ĐșĐŸĐŒĐżĐŸĐ·ĐžŃ‚ĐŸŃ€Đ° ЀОлОпа Гласса Đž Đ”ĐłĐŸ ĐŒŃƒĐ·Ń‹ĐșĐ” Đș Ń‚Ń€ĐžĐ»ĐŸĐłĐžĐž «КацО». Đ Đ°ŃŃĐŒĐ°Ń‚Ń€ĐžĐČĐ°Đ”Ń‚ŃŃ Ń€ĐŸĐ»ŃŒ ĐŒŃƒĐ·Ń‹ĐșĐ°Đ»ŃŒĐœĐŸĐłĐŸ ĐŒĐžĐœĐžĐŒĐ°Đ»ĐžĐ·ĐŒĐ° ĐČ ĐșĐžĐœĐ”ĐŒĐ°Ń‚ĐŸĐłŃ€Đ°Ń„Đ”, Đ° таĐșжД Ń€Đ°Đ·Đ»ĐžŃ‡ĐœŃ‹Đ” ĐșĐŸĐŒĐżĐŸĐ·ĐžŃ‚ĐŸŃ€ŃĐșОД Ń‚Đ”Ń…ĐœĐžĐșĐž, ĐżŃ€ĐžĐŒĐ”ĐœĐžĐŒŃ‹Đ” Đș ĐŽĐ°ĐœĐœĐŸĐŒŃƒ ĐœĐ°ĐżŃ€Đ°ĐČĐ»Đ”ĐœĐžŃŽThe article discusses the concept of “creative/creative industries” and the areas that relate to them. The mechanism of the existence of creative industries in our time and their importance in socio-cultural practice is described. Cinema occupies an important place among the directions of creative industries. As an example of actual film works, the author pays attention to the work of composer Philip Glass and his music for the Katsi trilogy. The role of musical minimalism in cinema is considered, as well as various compositional techniques applicable to this directio

    Review of supershort avalanche electron beam during nanosecond-pulse discharges in some gases

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    Supershort avalanche electron beam (SAEB) plays an important role in nanosecond-pulse discharges. This paper aims at reviewing experiments results on characteritics of SAEB and its spectra in different gases in nanosecond-pulse discharges. All the joint experiments were carried in the Institute of High Current Electronics of the Russian Academy of Sciences and the Institute of Electrical Engineering of the Chinese Academy of Sciences. In these experiments, the generation of a SAEB in SF6 in an inhomogeneous electric field was studied on three generators with pulse rise times of 0.3, 0.5 and ∌2 ns. Firstly, the comparison of SAEB parameters in SF6 with those obtained in other gases (air, nitrogen, argon, and krypton) is introduced. Secondly, the SAEB spectra in SF6 and air at pressures of 10 kPa (75 torr), and 0.1 MPa (750 torr) are reviewed and discussed. Finally, 1.5-D theoretical simulation of the supershort pulse of the fast electron beam in a coaxial diode filled with SF6 at atmospheric pressure is described. The simulation was carried out in the framework of hybrid model for discharge and runaway electron kinetics. The above research progress can provide better understanding of the investigation into the mechanism of nanosecond-pulse discharges

    Search for new particles in events with energetic jets and large missing transverse momentum in proton-proton collisions at root s=13 TeV

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    A search is presented for new particles produced at the LHC in proton-proton collisions at root s = 13 TeV, using events with energetic jets and large missing transverse momentum. The analysis is based on a data sample corresponding to an integrated luminosity of 101 fb(-1), collected in 2017-2018 with the CMS detector. Machine learning techniques are used to define separate categories for events with narrow jets from initial-state radiation and events with large-radius jets consistent with a hadronic decay of a W or Z boson. A statistical combination is made with an earlier search based on a data sample of 36 fb(-1), collected in 2016. No significant excess of events is observed with respect to the standard model background expectation determined from control samples in data. The results are interpreted in terms of limits on the branching fraction of an invisible decay of the Higgs boson, as well as constraints on simplified models of dark matter, on first-generation scalar leptoquarks decaying to quarks and neutrinos, and on models with large extra dimensions. Several of the new limits, specifically for spin-1 dark matter mediators, pseudoscalar mediators, colored mediators, and leptoquarks, are the most restrictive to date.Peer reviewe

    Probing effective field theory operators in the associated production of top quarks with a Z boson in multilepton final states at root s=13 TeV

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    Search for lepton-flavor violating decays of the Higgs boson in the mu tau and e tau final states in proton-proton collisions at root s=13 TeV

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    A search is presented for lepton-flavor violating decays of the Higgs boson to mu t and et. The dataset corresponds to an integrated luminosity of 137 fb(-1) collected at the LHC in proton-proton collisions at a center-of-mass energy of 13 TeV. No significant excess has been found, and the results are interpreted in terms of upper limits on lepton-flavor violating branching fractions of the Higgs boson. The observed (expected) upper limits on the branching fractions are, respectively, B(H -> mu t) e tau) < 0.22(0.16)% at 95% confidence level.Peer reviewe
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