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Mikhail A. Dorf, Ph.D.

Affiliations: 
2010 Princeton University, Princeton, NJ 
Area:
Fluid and Plasma Physics
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"Mikhail Dorf"
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Parents

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Ronald C. Davidson grad student 2010 Princeton
 (Transport properties of intense ion beam pulse propagation for high energy density physics and inertial confinement fusion applications.)
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Publications

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Geyko VI, Dorf M, Angus JR. (2019) Gyrokinetic simulations of m = 0 mode in sheared flow Z-pinch plasmas Physics of Plasmas. 26: 062114
Angus JR, Dorf M, Geyko VI. (2019) Drift-ideal magnetohydrodynamic simulations of m = 0 modes in Z-pinch plasmas Physics of Plasmas. 26: 072505
Joseph I, Dorf M, Dorr M. (2019) Simulation of edge localized mode heat pulse using drift-kinetic ions and Boltzmann electrons Nuclear Materials and Energy. 19: 330-334
Dorf M, Dorr M, Hittinger J, et al. (2018) High-order finite-volume modeling of drift waves Journal of Computational Physics. 373: 446-454
Dorr MR, Colella P, Dorf MA, et al. (2018) High-order discretization of a gyrokinetic Vlasov model in edge plasma geometry Journal of Computational Physics. 373: 605-630
Ghosh D, Dorf MA, Dorr MR, et al. (2018) Kinetic Simulation of Collisional Magnetized Plasmas with Semi-implicit Time Integration Journal of Scientific Computing. 77: 819-849
Dorf M, Dorr M. (2018) Continuum kinetic modelling of cross-separatrix plasma transport in a tokamak edge including self-consistent electric fields Contributions to Plasma Physics. 58: 434-444
Dorf MA, Dorr MR, Hittinger JA, et al. (2016) Continuum kinetic modeling of the tokamak plasma edge Physics of Plasmas. 23
Dorf MA, Zorin VG, Sidorov AV, et al. (2014) Generation of multi-charged high current ion beams using the SMIS 37 gas-dynamic electron cyclotron resonance (ECR) ion source Nuclear Instruments and Methods in Physics Research, Section a: Accelerators, Spectrometers, Detectors and Associated Equipment. 733: 107-111
Dorf MA, Cohen RH, Dorr M, et al. (2014) Progress with the COGENT edge kinetic Code: Implementing the Fokker-Planck collision operator Contributions to Plasma Physics. 54: 517-523
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