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Journal of Instrumentation, ISSN 1748-0221, 11/2019, Volume 14, Issue 11, pp. C11027 - C11027
Journal Article
JETP Letters, ISSN 0021-3640, 2018, Volume 107, Issue 4, pp. 219 - 222
The propagation velocities of a subthreshold discharge excited in air at atmospheric pressure by a pulsed microwave beam with a Gaussian field distribution, a... 
PHYSICS, MULTIDISCIPLINARY
Journal Article
Plasma Physics Reports, ISSN 1063-780X, 6/2019, Volume 45, Issue 6, pp. 523 - 526
A subthreshold microwave discharge in atmospheric-pressure air is used to process mixtures of mercaptans (thiols) with air and with air and methane. It is... 
Atomic, Molecular, Optical and Plasma Physics | Physics | PHYSICS, FLUIDS & PLASMAS | ATMOSPHERE | Methane | Thiols
Journal Article
Plasma Physics Reports, ISSN 1063-780X, 6/2018, Volume 44, Issue 6, pp. 615 - 625
A new form of discharge excited by a microwave beam in a high-pressure (up to atmospheric and higher) gas in free space and in a closed chamber is discussed.... 
Atomic, Molecular, Optical and Plasma Physics | Physics | TORCH | GAS | PHYSICS, FLUIDS & PLASMAS | Plasma physics | Usage | MICROWAVE AMPLIFIERS | 70 PLASMA PHYSICS AND FUSION TECHNOLOGY | MICROWAVE RADIATION | PLASMA | PULSES
Journal Article
Plasma Physics Reports, ISSN 1063-780X, 12/2018, Volume 44, Issue 12, pp. 1146 - 1153
Ionization−overheating instability of a non-self-sustained discharge in air in a subthreshold microwave field creates a self-sustained discharge with a fine... 
Atomic, Molecular, Optical and Plasma Physics | Physics | PHYSICS, FLUIDS & PLASMAS
Journal Article
Nuclear Fusion, ISSN 0029-5515, 03/2017, Volume 57, Issue 7, p. 72004
Heavy ion beam probing (HIBP) is a unique diagnostics to study the core plasma potential and turbulence. Advanced HIBPs operate in the T-10 tokamak and TJ-II... 
Diagnostics | Turbulence | Heavy ion beam probe | DENSITY | diagnostics | EVOLUTION | GEODESIC-ACOUSTIC-MODE | FLUCTUATION MEASUREMENTS | PHYSICS, FLUIDS & PLASMAS | FLUX | SYSTEMS | STELLARATOR | turbulence | heavy ion beam probe | TOKAMAK
Journal Article
Nuclear Fusion, ISSN 0029-5515, 06/2018, Volume 58, Issue 8, p. 82019
Alfven eigenmodes were studied in the low magnetic shear flexible heliac TJ-II NBI-heated plasmas by heavy ion beam probe (HIBP), which is capable to measure... 
chirping | TJ-II stellarator | Alfvén eigenmodes | Alfven eigenmodes | PHYSICS, FLUIDS & PLASMAS | MODE | PLASMAS | INSTABILITIES | TOKAMAK
Journal Article
NUCLEAR FUSION, ISSN 0029-5515, 06/2019, Volume 59, Issue 6, p. 66021
The paper is focused on the new systematic measurements of the 3D spatial distributions of the amplitudes, the radial correlation lengths and the long-range... 
CORE | PHYSICS, FLUIDS & PLASMAS | MODE | tokamak | reflectometry | PARAMETERS | turbulence | CORRELATION REFLECTOMETRY
Journal Article
Plasma Physics and Controlled Fusion, ISSN 0741-3335, 06/2018, Volume 60, Issue 8, p. 84008
Electric field. or electric potential phi plays a key role in the transport and turbulence of toroidal plasmas. It is believed that mean radial E-r suppresses... 
ECRH | plasma potential | stellarator | tokamak | geodesic acoustic mode | Alfven eigenmode | HIBP | ZONAL FLOWS | HIBP DIAGNOSTICS | PHYSICS, FLUIDS & PLASMAS | FIELD | IMPROVED CONFINEMENT | ION BEAM PROBE | TRANSPORT | H-MODE | EVOLUTION | GEODESIC-ACOUSTIC-MODE | PHYSICS
Journal Article
JOURNAL OF INSTRUMENTATION, ISSN 1748-0221, 09/2019, Volume 14, Issue 9, pp. C09033 - C09033
Heavy Ion Beam Probing (HIBP) is a unique tool for plasma potential measurements. In the TJ-II stellarator (CIEMAT, Madrid, Spain) HIBP is capable to move the... 
Data processing methods | INSTRUMENTS & INSTRUMENTATION | Plasma diagnostics - probes
Journal Article
Journal of Physics: Conference Series, ISSN 1742-6588, 10/2017, Volume 907, Issue 1, p. 12022
Conference Proceeding
Fusion Engineering and Design, ISSN 0920-3796, 09/2019, Volume 146, pp. 850 - 853
Advanced heavy ion beam probe (HIBP) operates on the T-10 tokamak with 20–130 beam accelerated up to 330 keV. The HIBP has a unique capability to measure the... 
Plasma potential | Heavy ion beam probe | Turbulent particle flux | Rotation | Geodesic acoustic modes | SPACE | NUCLEAR SCIENCE & TECHNOLOGY | Plasma | Turbulence | Heavy ions | Power supplies | Turbulent flow | Broadband | Oscillations | Tokamak devices | Density | Ion beams | Phase velocity | Spectrum analysis | Plasmas | Electric fields
Journal Article
Plasma Physics Reports, ISSN 1063-780X, 10/2013, Volume 39, Issue 10, pp. 843 - 848
Synthesis of titanium diboride and boron nitride nano- and microcrystals by means of a pulsed microwave discharge in a mixture of Ti-B powders in a nitrogen... 
Atomic, Molecular, Optical and Plasma Physics | Physics | PHYSICS, FLUIDS & PLASMAS | BORON-NITRIDE
Journal Article
Problems of Atomic Science and Technology, ISSN 1682-9344, 2018, Volume 118, Issue 6, pp. 321 - 323
Journal Article
Plasma Physics Reports, ISSN 1063-780X, 11/2017, Volume 43, Issue 11, pp. 1052 - 1064
Correlation between short-wavelength (k ⊥ ≈ 20–30 cm–1) and long-wavelength (k ⊥ ≈ 1–2 cm–1) plasma density fluctuations in two poloidal cross sections of the... 
Atomic, Molecular, Optical and Plasma Physics | Physics | CORE | TURBULENCE | PARAMETERS | PHYSICS, FLUIDS & PLASMAS | TOKAMAK | Plasma physics | Radiation | PLASMA DENSITY | CROSS SECTIONS | 70 PLASMA PHYSICS AND FUSION TECHNOLOGY | FLUCTUATIONS | ELECTRON CYCLOTRON-RESONANCE | MICROWAVE AMPLIFIERS | PLASMA HEATING | STELLARATORS
Journal Article
JETP Letters, ISSN 0021-3640, 8/2015, Volume 102, Issue 4, pp. 217 - 221
Fluctuations of the density in a transient process at electron-cyclotron heating have been measured by the methods of backscattering and small-angle scattering... 
Solid State Physics | Quantum Information Technology, Spintronics | Atomic, Molecular, Optical and Plasma Physics | Biophysics and Biological Physics | Physics | Particle and Nuclear Physics | PHYSICS, MULTIDISCIPLINARY | PLASMA | Plasma physics | Particle accelerators
Journal Article
Journal of Nanoelectronics and Optoelectronics, ISSN 1555-130X, 01/2013, Volume 8, Issue 1, pp. 58 - 66
Microwave discharge was initiated in Ti-B mixture in nitrogen atmosphere at radiation intensities up to 8 kW/cm(2). The space concentration of Ti in the powder... 
Nanostructure | Boron Nitride | Microstructure | Microwave Discharge | Titanium Diboride | PHYSICS, APPLIED | NANOSCIENCE & NANOTECHNOLOGY | ENGINEERING, ELECTRICAL & ELECTRONIC
Journal Article
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