Papers
Selected publications
Irina Voitsekhovitch is author or co-author of more than 100 journal publications and numerous conference papers on tokamak transport and integrated scenario modelling. A representative selection is listed below.
- Limiting rate of inductionless current drive in a tokamak. I.A. Voitsekhovitch, V.V. Parail, G.V. Pereverzev. JETP Letters 46 (1987) 20. jetpletters.ac.ru
- Self-consistent description of the L–H mode transition dynamics in tokamaks. I.A. Voitsekhovitch, A.Yu. Dnestrovskij, V.V. Parail. Nucl. Fusion 35 (1995) 631. iopscience.iop.org
- Thermal electron transport in the regimes with low and negative magnetic shear on Tore Supra. I. Voitsekhovitch, X. Litaudon, D. Moreau, et al. Nucl. Fusion 37 (1997) 1715. iopscience.iop.org
- Modelling of the shear effects on the thermal ion transport in advanced tokamak scenarios. I. Voitsekhovitch, X. Garbet, D. Moreau, et al. Phys. Plasmas 6 (1999) 4229. aip.scitation.org
- Plasma control issues for an advanced steady state tokamak reactor. D. Moreau, I. Voitsekhovitch. Nucl. Fusion 39 (1999) 685. iopscience.iop.org
- Modelling of “advanced tokamak” scenarios with radiofrequency heating and current drive for Tore Supra. I. Voitsekhovitch, D. Moreau. Nucl. Fusion 41 (2001) 845. iopscience.iop.org
- Numerical techniques used in neutral beam injection modules. A. Pankin, G. Bateman, R. Budny, A.H. Kritz, D. McCune, A. Polevoi, I. Voitsekhovitch. Computer Physics Communications 164 (2004) 421.
- Density dependence of trace tritium transport in H-mode Joint European Torus plasma. I. Voitsekhovitch, X. Garbet, D.C. McDonald, et al. Phys. Plasmas 12 (2005) 052508. aip.scitation.org
- Combined model for the H-mode pedestal and ELMs. A. Pankin, I. Voitsekhovitch, G. Bateman, et al. Plasma Phys. Control. Fusion 47 (2005) 483. iopscience.iop.org
- Modelling of alpha-particle behaviour in H-mode plasmas with trace tritium at JET. I. Voitsekhovitch, V. Kiptily, V. Goloborod’ko, et al. Nucl. Fusion 47 (2007) 599. iopscience.iop.org
- Integrated core–SOL–divertor modelling for ITER including impurity: effect of tungsten on fusion performance in H-mode and hybrid scenario. R. Zagorski, I. Voitsekhovitch, I. Ivanova-Stanik, et al. Nucl. Fusion 55 (2015) 053032.
- Non-inductive high-performance discharges on TCV on the path to steady state. S. Coda, C. Piron, I. Voitsekhovitch, et al. Nucl. Fusion 66 (2026) 086048.
- Stabilization of ion temperature gradient driven turbulence and formation of an internal transport barrier in a tokamak. I. Voitsekhovitch, X. Garbet, S. Benkadda, et al. Phys. Plasmas 9 (2002) 4671.
- Extending the boundaries of fully non-inductive tokamak operation: new current ramp-up scenario on TCV. I. Voitsekhovitch, S. Coda, C. Piron, et al. Plasma Physics and Technology, 2026, submitted.
- Particle and thermal transport in JET Helium and Hydrogen-Helium H-mode plasmas. I. Voitsekhovitch, M. Poradzinski, D. Taylor, et al. Fusion Engineering and Design 225 (2026) 115664.
Selected publications
Eugenia Dlougach is author or co-author of more than 40 journal articles and conference papers on NBI design and physics, including the BTR code itself. A representative selection is listed below.
- Neutral beam integrated efficiency for steady-state operation of a fusion neutron source design based on a spherical tokamak. E.D. Dlougach. Plasma Physics and Controlled Fusion, 2025. doi.org/10.1088/1361-6587/addc99
- Neural network applications for NBI performance studies using synthetic data from BTR code. M. Kichik, E.D. Dlougach. Journal of Instrumentation, 2025. doi.org/10.1088/1748-0221/20/05/c05031
- Simulations of Neutral Beam Injection in Quasi-Stationary Operation Scenario of T-15MD Tokamak. M.Yu. Isaev, K.E. Barkalov, E.D. Dlougach, N.V. Kasyanova, A.Yu. Kuyanov, A.A. Martynov, D.V. Smirnov. Plasma Physics Reports, 2025.
- Integrated Model of Neutral Beam Performance in a Fusion Neutron Source Tokamak. E.D. Dlougach, B.V. Kuteev. IEEE Transactions on Plasma Science, 2024. ieeexplore.ieee.org
- The impact of neutral beam parameters on current drive and neutron yield in DEMO-FNS tokamak. E.D. Dlougach, P. Veltri. JINST, 2024. iopscience.iop.org
- Beam Transmission (BTR) Software for Efficient Neutral Beam Injector Design and Tokamak Operation. E.D. Dlougach, M. Kichik. Software, 2023. doi.org/10.3390/software2040022
- Neutral Beams for Neutron Generation in Fusion Neutron Sources. E.D. Dlougach, M. Shlenskii, B.V. Kuteev. Atoms, 2022. doi.org/10.3390/atoms10040143
- Impact of Neutral Beam and Plasma Shaping on the Current Drive Efficiency and Fast Ion Losses in a Compact Tokamak FNS-ST. E.D. Dlougach, B.V. Kuteev. IEEE Transactions on Plasma Science, 2022. ieeexplore.ieee.org
- Neutral Beam Coupling with Plasma in a Compact Fusion Neutron Source. E.D. Dlougach, A.A. Panasenkov, B.V. Kuteev, A. Serikov. Applied Sciences, 2022. doi.org/10.3390/app12178404
- BTR code for NBI design and optimization. E.D. Dlougach. AIP Conference Proceedings (NIBS) 2373, 2021. doi.org/10.1063/5.0057499
- BTR code recent modifications for multi-run operation. E.D. Dlougach, P. Veltri. AIP Conference Proceedings (NIBS) 2373, 2021. doi.org/10.1063/5.0057502
- BTR application for beam slowing-down analysis. E.D. Dlougach. AIP Conference Proceedings 2373, 2021. doi.org/10.1063/5.0057500
- Neutral beam stopping and shine-through calculations for fusion neutron source DEMO-FNS. E.D. Dlougach, B.V. Kuteev. AIP Conference Proceedings (AAPP), 2019. doi.org/10.1063/1.5135477
- Beam transport code for the KSTAR NB heating system. B.H. Oh, E.D. Dlougach. IEEE Transactions on Plasma Science, 2005 (Special Issue — SOFE-2003). dx.doi.org
- The next step in the development of a negative ion beam plasma neutralizer for ITER NBI. V.M. Kulygin, E.D. Dlougach, E.P. Gorbunov, E.Yu. Klimenko, A.A. Mehed’kin, I.V. Moskalenko, A.A. Panasenkov, Yu.M. Pustovoit, A.A. Skovoroda, V.A. Smirnov, V.A. Zhil’tsov, V.F. Zubarev. Nuclear Fusion, 2001. doi.org/10.1088/0029-5515/41/4/301