Bibliography
I.
Journal Articles (SCI-indexed)
1.
Calibration of the TFTR
lost Alpha diagnostic, R. L. Boivin, Z. Lin, A.
L. Roquemore, S. J. Zweben,
Rev. Sci. Instrum.
63, 4418 (1992).
2.
Gyrokinetic particle
simulation of neoclassical transport, Z. Lin, W. M. Tang, and W. W. Lee, Phys.Plasmas 2, 2975 (1995).
3.
Method for solving the
gyrokinetic Poisson equation in general geometry, Z. Lin and W.
W. Lee, Phys.Rev. E 52,
5646 (November 1995).
4.
Review of D-T results
from TFTR,
R. J. Hawryluk, C. W. Barnes, S. Batha,
M. A. Beer, M. G. Bell, R. Bell, H. Berk, M. Bitter, N. L. Bretz,
R. Budny, C. E. Bush, S. Cauffman, C. S. Chang, Z.
Chang, C. Z. Cheng, D. S. Darrow, R. Dendy, W. Dorland, L. Dudek,
H. Duong, R. Durst, P. C. Efthimion, H. Evenson, N. Fisch, R. Fisher, R. J. Fonck, C. Forrest, E.
Fredrickson, G. Y. Fu, H. P. Furth, N. Gorelenkov, B. Grek,
L. R. Grisham, G. Hammett, W. Heidbrink, H. W. Herrmann, M. Herrmann, K. W.
Hill, B. Hooper, J. Hosea, W. A. Houlberg, M. Hughes,
D. L. Jassby, F. C. Jobes,
D. W. Johnson, R. Kaita, J. Kamperschroer,
J. Kesner, A. Krazilnikov,
H. Kugel, A. Kumar, P. H. LaMarche,
B. LeBlanc, J. Levine, F. M. Levinton, Z. Lin, J. Machuzak, R. Majeski, D. K.
Mansfield, E. Mazucato, M. Mauel, J. McChesney, K. M. McGuire, G. McKee, D. M. Meade, S. S.
Medley, D. R. Mikkelsen, S. V. Mirnov,
D. Mueller, G. Navratil, R. Nazikian, B. Nevins, M. Okabayashi, M. Osakabe, D. K.
Owens, H. Park, W. Park, S. F. Paul, M. Petrov, C. Kieras-Phillips, M. Phillips, P. Phillips, A. Ramsey, M. H.
Redi, G. Rewoldt, B. Rice, J. Rogers, A. L. Roquemore, E. Ruskov, S. A. Sabbagh,
M. Sasao, G. Schilling, G. L. Schmidt, S. D. Scott,
I. Semenov, C. H. Skinner, D. Spong, J. D. Strachan, E. J. Strait, B. C.
Stratton, E. Synakowski, H. Takahashi, W. M. Tang, G.
Taylor, S. von Goeler, A. von Halle, R. B. White, M.
D. Williams, J. R. Wilson, K. L. Wong, G. A. Wurden,
K. M. Young, M. C. Zarnstorff, and S. J. Zweben, Fusion
Technology 30, 648 (1996).
5.
Neoclassical transport in
enhanced confinement toroidal plasmas, Z. Lin, W. M. Tang, and W. W.
Lee, Phys. Rev. Lett.
78, 456 (1997).
6.
Large orbit neoclassical
transport,
Z. Lin, W. M. Tang, and W. W. Lee, Phys. Plasmas
4, 1707 (1997).
7.
Sheared rotation
effects on kinetic stability in enhanced confinement tokamak plasmas, and
nonlinear dynamics of fluctuations and flows in axisymmetric plasmas, G. Rewoldt, M.
A. Beer, M. S. Chance, T. S. Hahm, Z. Lin, and W. M. Tang, Phys. Plasmas 5, 1815
(1998).
8.
Turbulent Transport Reduction by Zonal Flows: Massively
Parallel Simulations, Z. Lin, T. S. Hahm, W. W. Lee, W. M. Tang, and R. B.
White, Science 281, 1835 (1998).
9.
Shearing rate of
time-dependent E X B flow, T. S. Hahm, M. A. Beer, Z. Lin, G. W.
Hammett, W. W. Lee, and W. M. Tang, Phys.
Plasmas 6, 922 (1999).
10.
Effects of Collisional
Zonal Flow Damping on Turbulent Transport, Z. Lin, T. S. Hahm, W. W. Lee,
W. M. Tang, and P. H. Diamond, Phys. Rev.
Lett. 83,
3645 (1999).
11.
Physics Design of a High
beta Quasi-Axisymmetric Stellarator, A. Reiman, G. Fu, S. Hirshman, L.
Ku, D. Monticello, H. Mynick, M. Redi, D. Spong, M. Zarnstorff, B. Blackwell, A. Boozer, A. Brooks, W. A.
Cooper, M. Drevlak, R. Goldston,
J. Harris, M. Isaev, C. Kessel,
Z. Lin, J. F. Lyon, P. Merkel, M. Mikhailov, W.
Miner, N. Nakajima, G. Neilson, C. Nuehrenberg, M.
Okamoto, N. Pomphrey, W. Reiersen,
R. Sanchez, J. Schmidt, A. Subbotin, P. Valanju, K. Y. Watanabe, and R. White, Plasma Phys. Control. Fusion 41,
B273 (1999).
12.
Reduction of Turbulence
by Zonal Flows,
T. S. Hahm, Z. Lin, W. W. Lee, and W. M. Tang, International School of Plasma
Physics – Piero Caldirola 18, 443 (1999).
13.
Sheared-Flow Modes
in Toroidal Geometry, J. L. V. Lewandowski, Z. Lin, W. W. Lee, and T. S.
Hahm, Phys. Plasmas 7, 588 (2000).
14.
Numerical and Theoretical
Studies of Turbulence and Transport with E X B Shear Flows, Z. Lin, M. S.
Chance, T. S. Hahm, J. A. Krommes, W. W. Lee, I. Manuilskiy, H. E. Mynick, H. Qin, G. Rewoldt, W. M. Tang,
and R. B. White, Nuclear Fusion 40, 737 (2000).
15.
Physics Issues in the
Design of High-Beta, Low-Aspect-Ratio Stellarator
Experiments,
G. H. Neilson, A. H. Reiman, M. C. Zarnstorff, A. Brooks, G.-Y. Fu, R. J. Goldston,
L.-P. Ku, Z. Lin, R. Majeski, D. A. Monticello, H.
Mynick, N. Pomphrey, M. H. Redi,
W. T. Reiersen, J. A. Schmidt, S. P. Hirshman, J. F. Lyon, L. A. Berry, B. E. Nelson, R.
Sanchez, D. A. Spong, A. H. Boozer, W. H. Miner, Jr., P. M. Valanju,
W. A. Cooper, M. Drevlak, P. Merkel, and C. Nuehrenberg, Phys.
Plasmas 7, 1911 (2000).
16.
Gyrokinetic Simulations in
General Geometry and Applications to Collisional Damping of Zonal Flows, Z. Lin, T. S. Hahm,
W. W. Lee, W. M. Tang, and R. B. White, Phys.
Plasmas 7, 1857 (2000).
17.
Zonal Flow Measurements
Concept I,
T. S. Hahm, K. H. Burrel, Z. Lin, R. Nazikian, and E.
J. Synakowski, Plasma
Phys. Control. Fusion 41, A205
(2000).
18.
Excitation of zonal flow
by drift waves in toroidal plasmas, Liu Chen, Zhihong Lin, and Roscoe
White, Phys. Plasmas 7, 3129 (2000).
19.
Recent Advances in the
Design of Quasi-Axisymmetric Stellarator Plasma
Configurations,
A. Reiman, L. Ku, D. Monticello, S. Hirshman, S. Hudson, C. Kessel,
E. Lazarus, D. Mikkelsen, M. C. Zarnstorff,
L. A. Berry, A. Boozer, A. Brooks, W. A. Cooper, M. Drevlak,
E. Fredrickson, G. Fu, R. Goldston, R. Hatcher, W. Houlberg, M. Isaev, C. Jun, J.
Lewandowski, Z. Lin, J. Lyon, P. Merkel, M. Mikhailov,
W. Miner, H. Mynick, G. Neilson, B. E. Nelson, C. Nuehrenberg,
N. Pomphrey, M. Redi, W. Reiersen, P. Rutherford, R. Sanchez, J. Schmidt, D. Spong,
D. Strickler, A. Subbotin,
P. Valanju, and R. B. White, Phys. Plasmas 8, 2083
(2001).
20.
A Fluid-Kinetic Hybrid
Electron Model for Electromagnetic Simulations, Zhihong Lin
and Liu Chen, Phys. Plasmas 8, 1447 (2001).
21.
Gyrokinetic
Calculations of the Neoclassical Radial Electric Field in Stellarator
Plasmas,
J. L. V. Lewandowski, A. H. Boozer, J. Williams and Z. Lin, Phys. Plasmas 8, 2849 (2001).
22.
Non-linear Zonal Flow
Dynamics of Drift and Drift-Alfven Turbulences in Tokamak Plasmas, L. Chen, Z.
Lin, R. B. White and F. Zonca, Nuclear
Fusion 41, 747 (2001).
23.
Secondary Instability
in Drift Wave Turbulence as a Mechanism for Zonal Flow and Avalanche Formation, P. H. Diamond,
S. Champeaux, M. Malkov, A.
Das, I. Gruzinov, M. N. Rosenbluth,
C. Holland, B. Wecht, A. Smolyakov,
F. L. Hinton, Z. Lin, T. S. Hahm, Nuclear
Fusion 41, 1067 (2001).
24.
Shear-Alfven Waves in
Gyrokinetic Plasmas, W. W. Lee, J. L. V. Lewandowski, T. S. Hahm, and
Z. Lin, Phys. Plasmas 8, 4435 (2001).
25.
On Resonant Heating Below the Cyclotron Frequency, Liu Chen,
Zhihong Lin, and Roscoe B. White, Phys.
Plasmas 8, 4713 (2001).
26.
Resonant Plasma Heating Below the Cyclotron Frequency, Roscoe B.
White, Liu Chen, and Zhihong Lin, Phys.
Plasmas 9, 1890 (2002).
27.
Size Scaling of Turbulent
Transport in Magnetically Confined Plasmas, Z. Lin, T. S.
Hahm, S. Ethier, and W. M. Tang, Phys.
Rev. Lett. 88,
195004 (2002).
28.
Turbulence Spreading and
Transport Scaling in Global Gyrokinetic Particle Simulation, Z. Lin and T. S.
Hahm, Phys. Plasmas 11, 1099 (2004).
29.
Turbulence Spreading into
Linearly Stable Zone and Transport Scaling, T. S. Hahm, P.
H. Diamond, Z. Lin, K. Itoh, and S.-I. Itoh, Plasma Phys. Contr. Fusion 46,
A323 (2004).
30.
Porting the 3D
Gyrokinetic Particle-in-Cell Code GTC to the NEC SX-6 Vector Architecture: Perspectives
and Challenges, S.
Ethier and Z. Lin, Comp. Phys. Commun. 164,
456 (2004).
31.
Particle-in-Cell
Simulations of Electron Transport from Plasma Turbulence: Recent Progress in
Gyrokinetic Particle Simulations of Turbulent Plasmas, Z. Lin, G.
Rewoldt, S. Ethier, T. S. Hahm, W. W. Lee, J. L. V. Lewandowski, Y. Nishimura,
and W. X. Wang, Journal of Physics: Conference Series 16, 16 (2005).
32.
Gyrokinetic
particle-in-cell simulations of plasma microturbulence on advanced computing
platforms, S.
Ethier, W. M. Tang, and Z. Lin, Journal
of Physics: Conference Series 16,
1 (2005).
33.
Global Gyrokinetic
Particle Simulation of Turbulence and Transport in Realistic Tokamak Geometry,
W.
X. Wang, Z. Lin, W. M. Tang, W. W. Lee, S. Ethier, J. L. V. Lewandowski, G.
Rewoldt, T. S. Hahm, and J. Manickam, Journal
of Physics: Conference Series 16,
59 (2005).
34.
Dynamics of Turbulence
Spreading in Magnetically Confined Plasmas, O. D. Gurcan, P. H. Diamond, T. S. Hahm, and Z. Lin, Phys. Plasmas 12, 032303 (2005).
35.
A Gyrokinetic Electron and
Fully Kinetic Ion Plasma Simulation Model, Yu Lin, Xueyi Wang, Zhihong
Lin, and Liu Chen, Plasma Phys. Contr.
Fusion 47, 657 (2005).
36.
Role of Nonlinear Toroidal
Coupling in Electron Temperature Gradient Turbulence, Z. Lin, L.
Chen, and F. Zonca, Phys. Plasmas 12, 056125 (2005).
37.
On the Dynamics of
Edge-Core Coupling, T. S. Hahm, P. H. Diamond, Z. Lin, G. Rewoldt, O. Gurcan, and S. Ethier, Phys.
Plasmas 12, 090903 (2005).
38.
Nonlinear Toroidal Mode
coupling: A New Paradigm for Drift Wave Turbulence in Toroidal Plasmas, L. Chen, F.
Zonca, and Z. Lin, Plasma Phys. Contr.
Fusion 47, B71 (2005).
39.
A Finite Element
Poisson Solver for Global Gyrokinetic Particle Simulations, Y. Nishimura,
Z. Lin, J. L. V. Lewandowski, and S. Ethier, J. Comput. Phys. 214, 657 (2006).
40.
Global
particle-in-cell simulations of microturbulence with kinetic electrons, J.
L. V. Lewandowski, G. Rewoldt, S. Ethier, and W. W. Lee, and Z. Lin, Phys. Plasmas 13, 072306 (2006).
41.
A Finite
Element Mesh in a Tokamak Edge Geometry, Y. Nishimura and Z. Lin, Contributions Plasma Phys. 46, 551 (2006).
42.
Gyro-kinetic simulation of
global turbulent transport properties in tokamak Experiments, W.
X. Wang, Z. Lin, W. M. Tang, W. W. Lee, S. Ethier, J. L. V. Lewandowski, G. Rewoldt, T. S. Hahm, and J. Manickam, Phys. Plasmas 13, 092505 (2006).
43.
Statistical
analysis of fluctuations and noise-driven transport in particle-in-cell simulations of plasma turbulence, I. Holod and Z. Lin, Phys. Plasmas 14, 032306 (2007).
44.
Electromagnetic
global gyrokinetic simulation of shear Alfven wave dynamics in tokamak plasmas, Y. Nishimura,
Z. Lin, and W. X. Wang, Phys. Plasmas 14, 042503 (2007).
45.
Gyrokinetic theory and
simulation of mirror instability, H. Qu, Z. Lin, and L. Chen, Phys. Plasmas 14, 042108 (2007).
46.
Simulation of Fusion Plasmas: Current
Status and Future Direction, D. A. Batchelor, M. Beck, A. Becoulet,
R. V. Budny, C. S. Chang, P. H. Diamond, J. Q. Dong, G. Y. Fu, A. Fukuyama, T.
S. Hahm, D. E. Keyes, Y. Kishimoto, S. Klasky, L. L. Lao, K. Li, Z. Lin, B. Ludaescher, J. Manickam, N.
Nakajima, T. Ozeki, N. Podhorszki, W. M. Tang, M. A. Vouk, R. E. Waltz, S. J. Wang, H. R. Wilson, X. Q. Xu, M. Yagi, and F. Zonca, Plasma
Sci. Technol. 9, 312-387 (2007).
47. Linear comparison of gyrokinetic codes with trapped electrons, G. Rewoldt, Z. Lin, and Y. Idomura, Comp. Phys. Commun. 177, 775 (2007).
48.
Global
gyrokinetic particle simulations with kinetic electrons, Z. Lin, Y.
Nishimura, Y. Xiao, I. Holod, W. L. Zhang, and L. Chen, Plasma Phys. Contr. Fusion 49, B163 (2007).
49.
Wave-particle decorrelation
and transport of anisotropic turbulence in collisionless plasmas, Z. Lin, I. Holod, L. Chen, P. H. Diamond, T. S. Hahm, and S.
Ethier, Phys. Rev. Lett. 99,
265003 (2007).
50.
Nonlinear Saturation of
Mirror Instability, H. Qu, Z. Lin, and L. Chen, Geophy. Res. Lett. 35, L10108 (2008).
51.
Guiding
center orbit studies in a tokamak edge geometry employing Boozer and Cartesian coordinates, Y. Nishimura, Y. Xiao, and Z. Lin, Contributions Plasma Phys. 48, 224 (2008).
52. A particle simulation of current sheet instabilities under finite guide field, X. Y. Wang, Y. Lin, L. Chen, and Z. Lin, Phys. Plasmas 15, 072103 (2008).
53.
Gyrokinetic Particle
Simulation of Compressional Electromagnetic Modes, H. Qu and Z.
Lin, Commun. Comput. Phys.
4, 519 (2008).
54.
Two-Fluid
Formulation of Lower-Hybrid Drift Instabilities
in Current-Sheet Equilibrium with a Guide
Field,
W. Zhang, Z. Lin, P. H. Yoon, and X. Wang, Commun. Comput. Phys. 4, 719 (2008).
55.
Special issue for the 20th
International Conference on Numerical Simulation of Plasmas (ICNSP) - Preface, Z. H. Lin and
F. Waelbroeck, Commun. Comput. Phys. 4 (3), I (2008).
56.
Transport
of Energetic Particles by Microturbulence in Magnetized Plasmas, Wenlu Zhang, Zhihong Lin, and Liu Chen, Phys. Rev. Lett.
101, 095001 (2008).
57.
Gyrokinetic particle
simulations of toroidal momentum transport, I. Holod and
Z. Lin, Phys. Plasmas 15,
092302 (2008).
58.
Preface, S. Y. Chen, Z.
H. Lin, and T. Tang, Commun. Comput. Phys.
4 (5), I (2008).
59.
Full Torus
Electromagnetic Gyrokinetic Particle Simulations
with Kinetic Electrons, Y. Nishimura, Z. Lin and L. Chen, Commun. Comput. Phys.
5, 183 (2009).
60.
Physics of
non-diffusive turbulent transport
of momentum and the origins of
spontaneous rotation in tokamaks, P. H. Diamond, C.J. McDevitt,
O. D. Gurcan, T. S. Hahm, W. X. Wang, E. S. Yoon, I. Holod, Z. Lin, V. Naulin and
R. Singh, Nuclear Fusion 49,
045002 (2009).
61.
Compressed ITG turbulence
in diverted tokamak edge, C. S. Chang, S. Ku, P. H. Diamond, Z.
Lin, S. Parker, T. S. Hahm, and N. Samatova, Phys. Plasmas 16, 056108 (2009).
62.
Turbulent transport of
trapped electron modes in collisionless plasmas, Yong Xiao and
Zhihong Lin, Phys. Rev. Lett. 103,
085004 (2009).
63.
Properties of
microturbulence in toroidal plasmas with reversed magnetic shear, Wenjun Deng
and Zhihong Lin, Phys. Plasmas 16,
102503 (2009).
64.
The importance
of parallel nonlinearity in the self-interaction
of geodesic acoustic mode, H. S. Zhang,
Z. Qiu, L. Chen,
and Z. Lin, Nuclear Fusion 49,
125009 (2009).
65.
Electromagnetic
formulation of global gyrokinetic particle simulation in toroidal geometry, I. Holod, W.
L. Zhang, Y. Xiao, and Z. Lin, Phys.
Plasmas 16, 122307 (2009).
66.
Advanced simulation of
electron heat transport in fusion plasmas, Z. Lin, Y. Xiao, I. Holod, W. Zhang, W. Deng, S. Klasky, J. Lofstead, C. Kamath, and N. Wichmann, Journal of
Physics: Conference Series 180, 012059 (2009).
67.
Effects of
electron dynamics in toroidal momentum transport driven by ion temperature
gradient turbulence, I. Holod and Z.
Lin, Plasma Phys. Contr. Fusion 52, 035002 (2010).
68.
Fluctuation
characteristics and transport properties of collisionless trapped electron mode
turbulence, Yong
Xiao, Ihor Holod begin_of_the_skype_highlighting,
Wenlu Zhang, Scott Klasky, and Zhihong Lin,
Phys. Plasmas 17, 022302 (2010).
69.
Scalings of energetic particle transport by ion temperature
gradient Microturbulence, Wenlu
Zhang, Viktor Decyk, Ihor Holod
begin_of_the_skype_highlighting, Yong Xiao, Zhihong Lin, and Liu Chen, Phys. Plasmas 17, 055902 (2010).
70.
Trapped Electron
Damping of Geodesic Acoustic Mode, Huasen Zhang and Zhihong Lin, Phys. Plasmas 17, 072502 (2010).
71.
Gyrokinetic Simulation of
Turbulence Driven Geodesic Acoustic Modes in Edge Plasmas of HL-2A Tokamak, Feng Liu, Z.
Lin, J. Q. Dong, K. J. Zhao, Phys. Plasmas 17, 112318
(2010).
72.
Gyrokinetic particle
simulations of reversed shear Alfven eigenmode excited by antenna and fast ions, Wenjun Deng, Zhihong Lin, Ihor Holod, Xin Wang, Yong Xiao, and
Wenlu Zhang, Phys. Plasmas 17,
112504 (2010).
73.
Gyrokinetic particle
simulation of beta-induced Alfven eigenmode, H. S. Zhang,
Z. Lin, I. Holod, X. Wang, Y. Xiao, W. L. Zhang, Phys. Plasmas 17, 112505 (2010).
74.
Gyrokinetic
simulation of magnetic compressional modes
in general geometry, Peter Porazik and Zhihong Lin, Commun. Comput. Phys. 10, 899 (2011).
75.
Gyrokinetic
particle simulation of drift-compressional modes in dipole geometry, Peter Porazik and Zhihong Lin, Phys. Plasmas 18, 072107 (2011).
76.
Convective motion in
collisionless trapped electron mode turbulence, Yong Xiao and
Zhihong Lin, Phys. Plasmas 18, 110703 (2011).
77.
Comment on
``Electrostatic and magnetic transport of energetic ions in turbulent plasmas'', W. L. Zhang,
Z. Lin, and L. Chen, Phys. Rev. Lett. 107,
239501 (2011).
78.
Gyrokinetic simulation
model for kinetic magnetohydrodynamic processes in magnetized plasmas, W. Deng, Z.
Lin, and I. Holod, Nuclear Fusion 52,
023005 (2012).
79.
Turbulent Transport of
Toroidal Angular Momentum in Fusion Plasmas, I. Holod, Z.
Lin, and Y. Xiao, Phys. Plasmas 19, 012314 (2012).
80.
Global
Gyrokinetic Particle Simulation of Toroidal Alfven Eigenmodes Excited by Antenna and Fast Ions, Wenlu Zhang, Ihor Holod, Zhihong Lin, and Yong Xiao, Phys. Plasmas 19, 022507 (2012).
81.
Validation of ETG
Turbulence in the Columbia Linear Machine, X. R. Fu, W. Horton, Y. Xiao,
Z. Lin, A. K. Sen, and V. Sokolov,
Phys. Plasmas 19, 032303 (2012).
82.
Linear properties of
reversed shear Alfven eigenmodes in DIII-D tokamak, W. Deng, Z.
Lin, I. Holod, Z. Wang, Y. Xiao, and H. Zhang, Nuclear Fusion 52, 043006 (2012).
83.
Nonlinear Frequency
Oscillation of Alfven Eigenmodes in Fusion Plasmas, H. S. Zhang, Z. Lin, and
I. Holod, Phys. Rev. Lett.
109, 025001 (2012).
84. Verification and validation of linear gyrokinetic simulation of Alfven eigenmodes in the DIII-D tokamak, D. A. Spong, E. M. Bass, W. Deng, W. W. Heidbrink, Z. Lin, B. Tobias, M. A. Van Zeeland, M. E. Austin, C. W. Domier, N. C. Luhmann, Jr., Phys. Plasmas 19, 082511 (2012).
85.
Verification of Gyrokinetic Particle Simulation of Device Size
Scaling of Turbulent Transport, Z. H.
Lin, S. Ethier, T. S. Hahm, and W. M. Tang, Plasma Sci. Technol. 14, 1125 (2012).
86.
Nonlinear dynamics of beta-induced Alfven eigenmode in
Tokamak,
H. S. Zhang, Z. Lin, W. Deng, I. Holod, Z. X. Wang, Y. Xiao, W. L. Zhang, Phys. Plasmas 20, 012510 (2013).
87.
Verification of Electromagnetic Fluid-Kinetic Hybrid Electron
Model in Global Gyrokinetic Particle Simulation, I. Holod and
Z. Lin, Phys. Plasmas 20, 032309
(2013).
88.
Comparison of toroidicity-induced
Alfven eigenmodes and energetic particle modes
by gyrokinetic particle simulations, Chenxi Zhang, Wenlu Zhang, Zhihong Lin, Ding
Li, Phys. Plasmas 20, 052501 (2013).
89.
GTC simulation of ideal
ballooning mode in tokamak plasmas, Z. Li, G. Sun, I. Holod, Y. Xiao, W.
Zhang, and Z. Lin, Plasma Sci.
Technol. 15, 2013, in press.
90.
Verification of
particle simulation of radio frequency waves in fusion plasmas, A. Kuley, Z. X. Wang, Z. Lin, and F. Wessel, submitted, 2013.
91. Does orbit-averaged theory require a scale separation between periodic orbit size and perturbation correlation length? W. L. Zhang, Z. Lin, and L. Chen, submitted, 2013.
92.
Spectral cascade and
energy dissipation in kinetic Alfven wave turbulence, Xi Cheng and Zhihong Lin, submitted, 2013.
93.
Nonlinear generation of zonal fields by the beta-induced
Alfven eigenmode in tokamak,
H. S. Zhang and Z. Lin, submitted, 2013.
II.
Conference Proceedings
94.
Turbulence and
Transport in Enhanced Confinement Regimes of Tokamaks: Simulation and Theory, T. S. Hahm, M.
Artun, M. A. Beer, G. W. Hammett, W. W. Lee, X. Li,
Z. Lin, H. E. Mynick, S. E. Parker, G. Rewoldt, and W. M. Tang, in Proceedings of the 16th
International Conference on Plasma Physics and Controlled Nuclear Fusion
Research (Montreal, Canada, 1996) (International Atomic Energy Agency,
Vienna, Austria, 1997). Paper IAEA-F1-CN-64/D1-2,
Vol.2, p. 335-345.
95.
Numerical and Theoretical
Studies of Turbulence and Transport with E X B Shear Flows, Z. Lin, M. S. Chance, T. S. Hahm, J. A. Krommes,
W. W. Lee, I. Manuilskiy, H. E. Mynick, H. Qin, G. Rewoldt,
W. M. Tang, and R. B. White, in
Proceedings of the 17th International Conference on Plasma Physics
and Controlled Nuclear Fusion Research (Yokohama, Japan 1998)
(International Atomic Energy Agency, Vienna, Austria, 1999). Paper
IAEA-F1-CN-69/THP2/28.
96.
Unifying Role of Radial
Electric Field Shear in the Confinement Trends of Transitionless
Regimes in TFTR,
D. R. Ernst, et al, including Z. Lin, in
Proceedings of the 17th International Conference on Plasma Physics
and Controlled Nuclear Fusion Research (Yokohama, Japan 1998)
(International Atomic Energy Agency, Vienna, Austria, 1999). Paper IAEA-F1-CN-69/EXP1-14.
97.
Physics Issues in the
Design of a High-b Quasi-Axisymmetric Stellarator, A. Reiman, et al, including Z. Lin, in Proceedings of the 17th International Conference on
Plasma Physics and Controlled Nuclear Fusion Research (Yokohama, Japan 1998)
(International Atomic Energy Agency, Vienna, Austria, 1999). Paper IAEA-F1-CN-69/ICP-06.
98.
First principles based
transport theory, D. Biskamp, P. H. Diamond,
X. Garbet, Z. Lin, J. Nührenberg, and R.N. Rogers, Nuclear Fusion 40, 873--878 (2000).
99.
Role of Zonal Flow in
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Simulations on the Nonlinear
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Integrated particle
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Gyrokinetic Simulation
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Transport of Energetic
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Linear and Nonlinear
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Verification of
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Size Scaling and Nondiffusive Features of Electron Heat Transport in
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Gyrokinetic Particle Simulation of Microturbulence
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Heterogeneous Programming and Optimization of Gyrokinetic
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