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S. I. Krasheninnikov

University of California, San Diego · US
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Area of research
Nuclear and High Energy Physics · Materials Chemistry
Research interest
Research interests include Magnetic confinement fusion research, Fusion materials and technologies, Ionosphere and magnetosphere dynamics, and Laser-Plasma Interactions and Diagnostics.
h-index
51
citations
10,521
works
568
NIH funding
primary concept
email

Recent publications

Scrape-off layer and divertor physics: Chapter 5 of the special issue: on the path to tokamak burning plasma operation
Nuclear Fusion 2025cited by 27position: contributordoi
On the e–p–γ thermodynamics
Physics of Plasmas 2025cited by 0position: contributordoi
Plasma equilibrium in a magnetic field of co-axial current coils: A novel view
Physics of Plasmas 2025cited by 0position: contributordoi
Electron transport in a tokamak scrape-off layer: impact of toroidal nonuniformities of divertor targets
Plasma Physics and Controlled Fusion 2025cited by 0position: contributordoi
Deuterium and tritium anomalous transport in the generalized Hasegawa–Wakatani resistive drift wave turbulence model with finite ion Larmor radius
Physics of Plasmas 2025cited by 0position: contributordoi
On transport of electrons in a magnetized plasma sheath
Physics of Plasmas 2025cited by 0position: contributordoi
Enhanced plasma performance in C-2W advanced beam-driven field-reversed configuration experiments
Nuclear Fusion 2024cited by 17position: contributordoi
Interaction of SPI pellets with plasma on JET and associated disruptions
Physica Scripta 2024cited by 8position: contributordoi
Resistive drift wave turbulence and anomalous transport of multi-species plasma
Physics of Plasmas 2024cited by 7position: contributordoi
Anomalous transport of multi-species edge plasma with the generalized Hasegawa–Wakatani model and the FLR effects
Physics of Plasmas 2024cited by 4position: contributordoi
On anomalous transport of multi-species plasma associated with the resistive ballooning and resistive drift waves driven turbulence
Physics of Plasmas 2024cited by 4position: contributordoi
On the force exerted on a non-spherical asymmetric dust grain from homogeneous, stationary, isotropic, non-magnetized plasma
Physics of Plasmas 2024cited by 3position: contributordoi
Modeling transient edge plasma transport with dynamic recycling
Physics of Plasmas 2024cited by 0position: contributordoi
Physics and applications of dusty plasmas: The Perspectives 2023
Physics of Plasmas 2023cited by 105position: middledoi
Physics and applications of dusty plasmas: The Perspectives 2023
Physics of Plasmas 2023cited by 102position: contributordoi
Modeling of carbon and tungsten transient dust influx in tokamak edge plasma
Physics of Plasmas 2023cited by 2position: contributordoi
Energy and particle balance during plasma detachment in a long-leg divertor configuration
Nuclear Fusion 2023cited by 2position: contributordoi
On the force exerted on a non-spherical dust grain from homogeneous magnetized plasma
Physics of Plasmas 2023cited by 2position: contributordoi
Mechanisms behind impurity spreading in a channeled, long-leg divertor configuration
Physics of Plasmas 2023cited by 0position: contributordoi
Mitigation of resistive drift wave and ion temperature gradient instabilities by velocity shear
Physics of Plasmas 2023cited by 0position: contributordoi
Dust and powder in fusion plasmas: recent developments in theory, modeling, and experiments
Reviews of Modern Plasma Physics 2022cited by 57position: lastdoi
1D model of tokamak scrape-off layer and divertor plasmas: Dimensionless parameters and the results of numerical simulations
Physics of Plasmas 2022cited by 6position: contributordoi
Divertor plasma detachment: roles of plasma momentum, energy, and particle balances
Plasma Physics and Controlled Fusion 2022cited by 5position: contributordoi
Fascinating physics at the edge of magnetic fusion devices
Plasma Physics and Controlled Fusion 2022cited by 3position: contributordoi
Resonance three-wave interactions and strange attractor
Physics of Plasmas 2022cited by 1position: contributordoi
Resonant three-wave interactions with linear source/sink terms: Exploring the parameter space
Physics of Plasmas 2022cited by 0position: contributordoi
Drift waves enstrophy, zonal flow, and nonlinear evolution of the modulational instability
Physics of Plasmas 2021cited by 3position: contributordoi
Effect of neutrals on the anomalous edge plasma transport
Plasma Physics and Controlled Fusion 2020cited by 12position: contributordoi
Influence of zonal flow and density on resistive drift wave turbulent transport
Physics of Plasmas 2020cited by 12position: contributordoi
Neutral impact on anomalous edge plasma transport and its correlation with divertor plasma detachment
Nuclear Fusion 2020cited by 8position: contributordoi

Grants

No grants ingested yet.

Frequent collaborators

· 28 papers (2019–2025) · 6 papers (2020–2025)Yanzeng Zhang · University of California San Diego5 papers (2019–2021)A.S. Kukushkin · AIP Publishing LLC4 papers (2019–2022)M. V. Umansky · Lawrence Livermore National Laboratory3 papers (2024–2025)Brian D. Wirth · University of California, Berkeley2 papers (2014–2014)A.A. Pshenov · Elsevier, Inc.2 papers (2019–2022)L E Zakharov · Kurchatov Institute2 papers (2024–2025)Y. Yakusevich · University of California San Diego2 papers (2022–2023)R. Masline · University of California, San Diego2 papers (2023–2023) · 2 papers (2016–2017)Michael Zäch · Oak Ridge National Laboratory1 papers (2018–2018)Dimitrios Maroudas · University of Tennessee at Knoxville1 papers (2014–2014)D. Nishijima · University of California San Diego1 papers (2018–2018)J. Guterl · General Atomics (United States)1 papers (2014–2014) · 1 papers (2018–2018)Karl D. Hammond · University of Tennessee at Knoxville1 papers (2014–2014) · 1 papers (2014–2014)A. Bortolon · Princeton University1 papers (2022–2022)R. Doerner · University of California, San Diego1 papers (2018–2018)
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