Articles / Dissertation with Citations to Z. Abou-Assaleh
 

  View List With Abstracts >>>

 
 
2008
 
http://www.iop.org/EJ/abstract/0963-0252/17/1/015012

Ion acoustic wave studies near the presheath/sheath boundary in a weakly collisional argon/xenon plasma

Lutfi Oksuz et al 2008 Plasma Sources Sci. Technol. 17 015012 (5pp)   doi:10.1088/0963-0252/17/1/015012

 
 
2006
 
Thin Solid Films
Volumes 506-507, 26 May 2006, Pages 674-678
The Joint Meeting of 7th APCPST (Asia Pacific Conference on Plasma Science and Technology) and 17th SPSM (Symposium on Plasma Science for Materials) - 7th APCPST/17th SPSM
 
Ion flow and sheath physics studies in multiple ion species plasmas using diode laser based laser-induced fluorescence
 
G.D. Severn1, a, Corresponding Author Contact Information, E-mail The Corresponding Author, Xu Wangb, Eunsuk Kob, N. Hershkowitzb, M.M. Turnerc and R. McWilliamsd
aDepartment of Physics, University of San Diego, San Diego, CA 92110, USA
bEngineering Physics Department, University of Wisconsin-Madison, Madison, WI 53706, USA
cNational Center for Plasma Science and Technology, Dublin City University, Glasnevin, Dublin 9, Ireland
dDepartment of Physics and Astronomy, University of California, Irvine, CA 92049, USA

Available online 27 December 2005.
 
 
2006
 

Contrib. Plasma Phys. 46, No. 1-2, 3 – 191 (2006) / DOI 10.1002/ctpp.200610001

Plasma Edge Physics with B2-Eirene

R. Schneider1, X. Bonnin2, K. Borrass3, D. P. Coster3, H. Kastelewicz4, D. Reiter5, V. A., Rozhansky6, and B. J. Braams7

 
2006
 

Japanese Journal of Applied Physics
Vol. 45, No. 7, 2006, pp. 5945-5950
URL :
http://jjap.ipap.jp/link?JJAP/45/5945/
DOI : 10.1143/JJAP.45.5945

Determination of Plasma Flow Velocity by Mach Probe and Triple Probe with Correction by Laser-Induced Fluorescence in Unmagnetized Plasmas

Yong-Sup Choi*, Hyun-Jong Woo, Kyu-Sun Chung**, Myoung-Jae Lee, David Zimmerman1 and Roger McWilliams1

 
2005
 
Journal of Nuclear Materials
Volumes 337-339 , 1 March 2005, Pages 246-250
 
Modification of atomic physics rates due to nonlocal electron parallel heat transport in divertor plasmas

F. Allaisa, Corresponding Author Contact Information, J.P. Mattea, Corresponding Author Contact Information, E-mail The Corresponding Author, F. Alouani-Bibia, C.G. Kima, D.P. Stotlerb and T.D. Rognlienc

aINRS-Énergie, Matériaux et Télécommunications, 1650 boul. Lionel Boulet, Varennes, Québec, Canada J3X 1S2
bPrinceton Plasma Physics Laboratory, Princeton, NJ, USA
cLawrence Livermore National Laboratory, Livermore, CA, USA
 

 
2005
 
doi:10.1016/j.tsf.2005.08.114 
Thin Solid Films
Volumes 506-507 , 26 May 2006, Pages 674-678

The Joint Meeting of 7th APCPST (Asia Pacific Conference on Plasma Science and Technology) and 17th SPSM (Symposium on Plasma Science for Materials) - 7th APCPST/17th SPSM
 
Ion flow and sheath physics studies in multiple ion species plasmas using diode laser based laser-induced fluorescence
G.D. Severn1, a,, Xu Wangb, Eunsuk Kob, N. Hershkowitzb, M.M. Turnerc and R. McWilliamsd

Available online 27 December 2005.
 
 
 
2005
 

Parallel heat flux limits in the tokamak scrape-off layer

W Fundamenski 2005 Plasma Phys. Control. Fusion 47 R163-R208   doi:10.1088/0741-3335/47/11/R01

W Fundamenski
Euratom/UKAEA Fusion Association, Culham Science Centre, Abingdon, Oxon, UK

http://www.iop.org/EJ/abstract/0741-3335/47/11/R01/

http://ej.iop.org/links/rTqyxnIWm/SnTZP6Wg2xGkAZxsav5vpA/psst5_1_022.pdf

 
2005
 

Scrape-off layer physics: an introduction (to be published)

Ralf Schneider,

Max-Planck-Institut f¨ur Plasmaphysik, EURATOM association, Garching, Germany

http://www.ipp-garching.mpg.de/~dpc/rfs.pdf

 
2005
 
Phys. Plasmas 12, 063104 (2005) (8 pages)
Supersonic propagation of ionization waves in an underdense, laser-produced plasma
C. Constantin, C. A. Back, K. B. Fournier, G. Gregori, O. L. Landen, S. H. Glenzer, and E. L. Dewald
Lawrence Livermore National Laboratory, 7000 East Avenue, Livermore, California 94550
M. C. Miller
Los Alamos National Laboratory, Los Alamos, New Mexico 87545
2005
 

L Oksuz et al 2005 Plasma Sources Sci. Technol. 14 201-208

Plasma, presheath, collisional sheath and collisionless sheath potential profiles in weakly ionized, weakly collisional plasma

L Oksuz1 and N Hershkowitz
Department of Engineering Physics, University of Wisconsin-Madison, USA

1 Current address: Plasma Research Laboratory, Dublin City University, Dublin, Republic of Ireland.

 doi:10.1088/0963-0252/14/1/022
URL: http://stacks.iop.org/0963-0252/14/201
PII: S0963-0252(05)93759-6

 
http://ej.iop.org/links/q38/g,zrlJAHsg6q,iou3NUz1w/psst5_1_022.pdf
 
2005
 
Presheath Environment in Weakly Ionized Single and Multispecies ...
[14] S. L. Gulick, B. L. Stansfield, Z. Abouassaleh, C. Boucher, J. P. Matte,.
T. W. Johnston, and R. Marchand, “Measurement of pre-sheath flow ve- ...
ieeexplore.ieee.org/iel5/27/30693/ 01420601.pdf?arnumber=1420601
 
Presheath environment in weakly ionized single and multispecies plasmas
Hershkowitz, N.   Ko, E.   Xu Wang   Hala, A.M.A.  
Center for Plasma-Aided Manuf., Univ. of Wisconsin, Madison, WI, USA;
 

This paper appears in: Plasma Science, IEEE Transactions on
Publication Date: April 2005
Volume: 33,  Issue: 2, Part 2
On page(s): 631- 636
ISSN: 0093-3813
INSPEC Accession Number: 8398049
Digital Object Identifier: 10.1109/TPS.2005.844608
Posted online: 2005-04-18 09:10:46.0
 

http://ieeexplore.ieee.org/xpl/freeabs_all.jsp?tp=&arnumber=1420601&isnumber=30693
 
 
2004
 
Phys. Rev. Lett. 92, 205006 (2004)
Effect of Nonlocal Transport on Heat-Wave Propagation
G. Gregori, S. H. Glenzer, J. Knight, C. Niemann, D. Price, D. H. Froula, M. J. Edwards, and R. P. J. Town
Lawrence Livermore National Laboratory, University of California, P.O. Box 808, California 94551, USA
A. Brantov and W. Rozmus
Department of Physics, University of Alberta, Edmonton, Alberta, Canada T6G 2J1
V. Yu. Bychenkov
P. N. Lebedev Physics Institute, Russian Academy of Sciences, Moscow 117924, Russia

 

Effect of Nonlocal Transport on Heat-Wave Propagation
URL: http://link.aps.org/abstract/PRL/v92/e205006
 
2004
 
Contributions to Plasma Physics
Volume 44, Issue 4 , Pages 352 - 360
Published Online: 8 Jun 2004
Plasma Modelling for the PSI Linear Plasma Device
H. Kastelewicz, G. Fussmann *
Humboldt-Universität zu Berlin, Institut für Physik Experimentelle Plasmaphysik, Germany
*Correspondence to G. Fussmann, Humboldt-Universität zu Berlin, Institut für Physik Experimentelle Plasmaphysik, Germany
 
Wiley InterScience Journal Abstract
 
2004
 

Physica Scripta. Vol. T108, 7–13, 2004

Simulation of the Edge Plasma in Tokamaks

D. P. Coster1, X. Bonnin2, B. Braams3, D. Reiter4, R. Schneider2 and the ASDEX Upgrade Team

http://www.ipp.mpg.de/~dpc/ibmtok1/dpc/hinm_paper_2003.pdf

 
Physica Scripta Online Vol. T108,? 7,? 2004

Simulation of the Edge Plasma in Tokamaks

D. P.? Coster, Max-Planck-Institut f?smaphysik,? EURATOM Association,? Garching,? Germany.
X.? Bonnin, Max-Planck-Institut f?smaphysik,? EURATOM Association,? Greifswald,? Germany.
B.? Braams, Courant Institute,? New York University,? New York,? USA.
D.? Reiter, Institut f?smaphysik, FZ J?? EURATOM Association,? J?? Germany.
R.? Schneider, Max-Planck-Institut f?smaphysik,? EURATOM Association,? Greifswald,? Germany.
ASDEX Upgrade Team? ,

Simulation of the Edge Plasma in Tokamaks
 
2003
 
Contributions to Plasma Physics, 43, No. 7, 426 (2003)
Laser plasma plume kinetic spectroscopy of the nitrogen and carbon species (Contributions to Plasma Physics 43 No. 7, 426 (2003))
Z. Zelinger *, M. Novotný 2, J. Bulí 2, J. Lanok 2, P. Kubát 1, M. Jelínek 2
1J. Heyrovský Institute of Physical Chemistry, Academy of Sciences of the Czech Republic, Dolejkova 3, 18223 Prague 8, Czech Republic
2Institute of Physics, Acad. of Sciences of the Czech Republic, Na Slovance 2, 18221 Prague 3, Czech Republic
 
2002
 
F.Allais, J.P. Matte, F.Alouani-Bibi, and D.Stotler,
29th EPS Conference on Plasma Phys. and Contr. Fusion Montreux, 17-21 June 2002 ECA Vol. 26B, P-3.215 (2002)
"Nonlocal Electron Parallel Heat Transport in Divertor Plasmas and Atomic Physics Rates"
 
http://epsppd.epfl.ch/Montreux/pdf/P3_215.pdf
 
2001
Physics of Plasmas -- May 2001 -- Volume 8, Issue 5, pp. 1650-1658
Electron kinetic simulations of solid density Al plasmas produced by intense subpicosecond laser pulses. I. Ionization dynamics in 30 femtosecond pulses
S. Ethier and J. P. Matte
INRS-Énergie et Matériaux, 1650 Boul. Lionel-Boulet, Varennes, Québec, Canada, J3X 1S2
Electron kinetic simulations of solid density Al plasmas produced by intense subpicosecond laser pulses. I. Ionization dynamics in 30 femtosecond pulses
 
2001
 
Jean-Pierre Matte
MODELING NON-LOCAL PARALLEL ELECTRON HEAT TRANSPORT IN DIVERTOR PLASMAS
Presentation at the NSTX Research Forum 2001
Princeton Plasma Physics Laboratory January15-18, 2001
 
http://nstx.pppl.gov/f.../ET5_Matte_.pdf
 
1998
 
A. S. Margellos, M.Sc. thesis, Faculty of Commerce and Administration, Concordia University, 1998. “THE CONDITIONAL CAMP AND THE CROSS SECTION OF EXPECTED RETRNS: EVIDENCE FOR THE CANADIAN MARKET”
"….  ACKNOWLEDGEMENTS  . . . to thank Dr. Zouhier A. Assaleh for his computer assistance …”.  Note: Assistance in the Data and Numerical Calculations.
 
1997
 
C S Pitcher and P C Stangeby 1997 Plasma Phys. Control. Fusion 39 779-930
REVIEW ARTICLE
Experimental divertor physics

C S Pitcher and P C Stangeby
Max-Planck-Institut für Plasmaphysik, Garching bei München, Germany

 
Experimental divertor physics
Institute of Physics Online Archive
http://gita.grainger.uiuc.edu/IOPText/0741-3335/39/6/001/p706r1.pdf
 
1997
 
Kinetic effects in tokamak scrape-off layer plasmas
O. V. Batishchev, S. I. Krasheninnikov, Peter J. Catto, A. A. Batishcheva, D. J. Sigmar,  X. Q. Xu, J. A. Byers, T. D. Rognlien, R. H. Cohen, M. M. Shoucri, I. P. Shkarofskii4)
1674 Phys. Plasmas, Vol. 4, No. 5, May 1997
 
http://adsabs.harvard.edu/abs/1997PhPl....4.1672B
 
1996
 
Vincent A. Mousseau, Ph.D. dissertation. Idaho National Engineering Laboratory. Lockheed Martin Idaho Technologies. INEL-96/0149, May 1996 .
"Fully Implicit Kinetic Modelling of Collisional Plasma"
 
http://www.osti.gov/bridge/servlets/purl/239296-SYCkrq/webviewable/239296.pdf
 
1996
 
Physica Scripta, Vol. 54, p.627 12/1996
Self-similar electron distributions in a non-uniform plasma embedded in a high-frequency electromagnetic field
Ferrante, G.; Porshnev, P. I.; Uryupin, S. A.; Zarcone, M.
 
Self-similar electron distributions in a non-uniform plasma embedded in a high-frequency electromagnetic field
 
1996
 
Astrophysical Journal v.462, p.1005 05/1996 (ApJ Homepage)
Nonlocal Heat Transport in the Solar Wind
Canullo, M. V.; Costa, A.; Ferro-Fontan, C.
 
1996ApJ...462.1005C Page 1005
Nonlocal Heat Transport in the Solar Wind
 
1996
 
Journal of the Optical Society of America B: Optical Physics, Volume 13, Issue 2, February 1996, pp.447-453
Application of x-ray-laser interferometry to study high-density laser-produced plasmas
Wan, A. S.; da Silva, L. B.; Barbee, T. W., Jr.; Cauble, R.; Celliers, P.; Libby, S. B.; London, R. A.; Moreno, J. C.; Trebes, J. E.; Weber, F.
Lawrence Livermore National Laboratory, Livermore, California 94550
 
Application of x-ray-laser interferometry to study high-density laser-produced plasmas
Abstract Application of x-ray-laser interferometry to study high-density laser-produced plasmas
 
1995
 
Numerical simulation of magnetic fusion plasma
Institute of Physics Online Archive
W Arter
 
AEA Technology, Culham. Abingdon. Oxon OX14 3DB, UK
Rep. Prog. Phys. 58 (1995) 1-59. Primed in the UK
0034-4885/95/010001+59S59.50  © 1995 IOP Publishing Ltd
". . .

     Lastly, it is worth noting that Fokker-Planck codes have been written to model inertial confinement fusion experiments, e.g. Andrade et al (1981), and at least one such (FPl) has then been used to model tokamak edge plasmas (Abou-Assaleh et al 1990).  The computational details are not directly relevant to this review, but the physical results from FPl are interesting, since they suggest that the heat transport is not well modelled by corresponding fluid codes. A comparison with results obtained using particle methods (section 3.6) would be of interest.

. . ."

1995
 
Physics of Plasmas -- August 1995 -- Volume 2, Issue 8, pp. 3100-3105
Self-similar electron distribution, inverse bremsstrahlung, and heat flux inhibition in high-Z nonuniform plasmas
S. A. Uryupin, S. Kato, and K. Mima
Institute of Laser Engineering, Osaka University, Suita, Osaka 565, Japan

 

Self-similar electron distribution, inverse bremsstrahlung, and heat flux inhibition in high-Z nonuniform plasmas
Self-similar electron distribution, inverse bremsstrahlung, and heat flux inhibition in high-Z nonuniform plasmas
 
1995
 
Physics of Plasmas -- May 1995 -- Volume 2, Issue 5, pp. 1412-1420
Modeling and effects of nonlocal electron heat flow in planar shock waves
F. Vidal and J. P. Matte
Institut National de la Recherche Scientifique—Energie et Matériaux, 1650 Montée Ste. Julie, CP 1020, Varennes, Québec J3X 1S2, Canada
M. Casanova and O. Larroche
Commissariat à l'Energie Atomique, Centre d'Etudes de Limeil-Valenton, 94195 Villeneuve St. Georges Cedex, France
Modeling and effects of nonlocal electron heat flow in planar shock waves
Modeling and effects of nonlocal electron heat flow in planar shock waves
 
1994
 
Implementation of Non-local Transport Model into 2D Fluid Code
A.S.Kukushkin , A.M.Runov
Kurchatov Institute. Kurchatov sir. 46. 123182. Moscow. Russia
Contribution to Plasma Physics, 34 (1994)
". . .  The main idea of the present paper is to produce a rather simple and computationally   efficient   hybrid   approach,   where   the   two-dimensional   fluid equations  are  solved  in  order  to  find  the  plasma  parameters,  and  the  parallel heat  flows  appearing  in  these  equations  are  found  from  simplified  kinetic equations   allowing  one  to  take  into  account  the  effects   related   to  the long-ranging  hot  particles.  This  approach  is  similar  to  the  one  proposed  by Z.Abou-Assaleh et al.  (PET-3. Bad Honnef,  1992), but the usage of the Krook collision   operator,   which   is   much   simpler   than   the   exact   Fokker-Plank operator,  allows  us  to  produce  an  efficient  code  for  two-dimensional  modelling of the edge plasma.  ….."
 
1994
 
J. M. Liu, J. S. De Groot, J. P. Matte and T. W. Johnston and R. P. Drake
Phys. Plasmas 1 (11), November 1994 (3570)
"Electron heat transport with non-Maxwellian distributions"
 
Physics of Plasmas -- November 1994 -- Volume 1, Issue 11, pp. 3570-3576
Electron heat transport with non-Maxwellian distributions
J. M. Liu and J. S. De Groot
Plasma Research Group, Department of Applied Science, University of California, Davis, California 95616
J. P. Matte and T. W. Johnston
INRS-Énergie et Matériaux, C.P. 1020, Varennes, Québec, J3X 1S2 Canada
R. P. Drake
Plasma Physics Research Institute, Lawrence Livermore National Laboratory, L-418, P.O. Box 808, Livermore, California 94551
Electron heat transport with non-Maxwellian distributions
Electron heat transport with non-Maxwellian distributions
 
1994
 
Phys. Rev. Lett. 73, 2055–2058 (1994)
Measurements of Radial Heat Wave Propagation in Laser-Produced Exploding-Foil Plasmas
D. S. Montgomery1, O. L. Landen1,3, R. P. Drake2,3, K. G. Estabrook1, H. A. Baldis1, S. H. Batha2, K. S. Bradley3, and R. J. Procassini1
1Lawrence Livermore National Laboratory, Livermore, California 94551
2Plasma Physics Research Institute, University of California Davis and Lawrence Livermore National Laboratory, Livermore, California 94551
3Department of Applied Science, University of California Davis, Davis, California 95616
 
URL: http://link.aps.org/abstract/PRL/v73/p2055
 
Phys. Rev. Lett. 73, 2055 (1994) Montgomery et al. - Measurements of Radial Heat...
Measurements of radial heat wave propagation in laser-produced exploding-foil plasmas
 
1994
 
Phys. Rev. A 50, 2691–2700 (1994) [Issue 3 – September 1994 ]
Phys. Rev. A 50, 2691–2700 (1994)
Electron distribution function in a thin plasma layer and possible x-ray laser emission due to a sharp temperature gradient
Boris N. Chichkov, Yoshiaki Kato, Hartmut Ruhl, and Sergey A. Uryupin
Theoretical Quantum Electronics, Technical University Darmstadt, Hochschulstrasse 4A, Darmstadt, Germany
Institute of Laser Engineering, Osaka University, 2-6 Yamada-oka, Suita, Osaka 565, Japan
P. N. Lebedev Physics Institute, Leninsky prospect 53, Moscow, Russia
 
Phys. Rev. A 50, 2691 (1994) Chichkov et al. - Electron distribution function in...
Electron distribution function in a thin plasma layer and possible x-ray laser emission due to a sharp temperature gradient
URL: http://link.aps.org/abstract/PRA/v50/p2691
 
1994
Phys. Rev. Lett. 72, 2717–2720 (1994)
Measurements of inverse bremsstrahlung absorption and non-Maxwellian electron velocity distributions
J. M. Liu, J. S. De Groot, J. P. Matte, T. W. Johnston, and R. P. Drake
Plasma Research Group, Department of Applied Science, University of California, Davis, California 95616
Institut National de la Recherche Scientifique Energie et Matériaux, C.P. 1020, Varennes, Québec, Canada J3X 1S2
Plasma Physics Research Institute, Lawrence Livermore National Laboratory, L-418, P.O. Box 808, Livermore, California 94551
 
URL: http://link.aps.org/abstract/PRL/v72/p2717
Phys. Rev. Lett. 72, 2717 (1994) Liu et al. - Measurements of inverse bremsstrahlung...
Measurements of inverse bremsstrahlung absorption and non-Maxwellian electron velocity distributions
"Measurements of inverse bremsstrahlung absorption and non-axwellian electron velocity distributions"
 
1993
 
David Peter Coster, Ph.D. dissertation. PRINCETON UNIVERSITY, 1993 .
"Tokamak divertor modeling with fluid and kinetic codes. "
http://www.ipp-garching.mpg.de/~dpc/thesis_single/thesis_single.html
References
Other approaches
[PDF] Tokamak divertor modeling with fluid and kinetic codes.
 
1993
 
Physics of Fluids B: Plasma Physics -- May 1993 -- Volume 5, Issue 5, pp. 1453-1470
Kinetic theory of a nonequilibrium plasma: Evaluation of the vectorized collisional Boltzmann equation
Ann W. Morgenthaler and Peter L. Hagelstein
Department of Electrical Engineering and Computer Science, Massachusetts Institute of Technology, 38-280, 77 Massachusetts Avenue, Cambridge, Massachusetts 02139
 
Kinetic theory of a nonequilibrium plasma - Evaluation of the vectorized collisional Boltzmann equation
Kinetic theory of a nonequilibrium plasma - Evaluation of the vectorized collisional Boltzmann equation
Kinetic theory of a nonequilibrium plasma Evaluation of the vectorized collisional Boltzmann equation
 
1992
 
Sidney Luther Gulick, Ph.D. dissertation. Université du Québec, Institut National de la recherche Scientifique, (INRS - Énergie et Matériaux), Varennes, Québec, Canada, 1992.
"UNE MESURE DE LA FONCTION DE DISTRIBUTION DE VITESSES IONIQUES DANS LA PREGAINE D'UN PLASMA PAR LA FLUORESCENCE INDUITE PAR LASER"
 
1992
 

J A Meyer et al 1992 Plasma Sources Sci. Technol. 1 147-150

Measurements of the presheath in an electron cyclotron resonance etching device

J A Meyer, G -H Kim, M J Goeckner and N Hershkowitz
Eng. Res. Center for Plasma-Aided Manuf., Wisconsin Univ., Madison, WI, USA

Print publication: Issue 3 (August 1992)

 
URL: http://stacks.iop.org/0963-0252/1/147
http://www.utdallas.edu/~goeckner/publications/PSST1p147_1992.pdf
 
 
1992
 
http://www.fluidmal.uma.es/pdfs/PFB_1992.pdf
 
Physics of Fluids B: Plasma Physics -- November 1992 -- Volume 4, Issue 11, pp. 3579-3585
Self-consistent, nonlocal electron heat flux at arbitrary ion charge number
Juan R. Sanmartín and J. Ramírez
E.T.S.I. Aeronáuticos, Universidad Politécnica, 28040 Madrid, Spain
R. Fernández-Feria
E.T.S.I. Industriales, Universidad de Sevilla, 41012 Sevilla, Spain
F. Minotti
Laboratorio de Física del Plasma, Universidad de Buenos Aires, 1428 Buenos Aires, Argentina
 
Self-consistent, nonlocal electron heat flux at arbitrary ion charge number
Self-consistent, nonlocal electron heat flux at arbitrary ion charge number
 
1992
 
Review of Scientific Instruments -- January 1992 -- Volume 63, Issue 1, pp. 31-36
Validating cylindrical Langmuir probe techniques
J. H. Rogers, J. S. De Groot, and D. Q. Hwang
University of California Davis and Lawrence Livermore National Laboratory, L-794 Livermore, California 94550
 
Validating cylindrical Langmuir probe techniques
Validating cylindrical Langmuir probe techniques
 
1991
Present state of research into the interaction between powerful laser radiation and high-temperature plasmas
V T Tikhonchuk
Physics-Uspekhi, Volume 34(1991), Number 10, Pages 903-909
 
1991
 
Applied Physics Letters -- July 29, 1991 -- Volume 59, Issue 5, pp. 534-536
Measurement of energy penetration depth of subpicosecond laser energy into solid density matter
A. Zigler, P. G. Burkhalter, and D. J. Nagel
Naval Research Laboratory, Washington, DC 20375
M. D. Rosen
Lawrence Livermore Laboratory, Livermore, California 94550
K. Boyer, G. Gibson, T. S. Luk, A. McPherson, and C. K. Rhodes
University of Illinois at Chicago, P. O. Box 4348, Chicago, Illinois 60680

 

Measurement of energy penetration depth of subpicosecond laser energy into solid density matter
Measurement of energy penetration depth of subpicosecond laser energy into solid density matter
 
1991
 
Physics of Fluids B: Plasma Physics -- February 1991 -- Volume 3, Issue 2, pp. 485-491
Non-Maxwellian electron distributions in ionizing plasmas
R. Marchand, J. P. Matte, and K. Parbhakar
INRS-ENERGIE, CP 1020, Varennes, Quebec J3X 1S2, Canada
 
Non-Maxwellian electron distributions in ionizing plasmas
Non-Maxwellian electron distributions in ionizing plasmas
Reference Query Results for 1991PhFlB...3..485M
 
1991
 
Октябрь 1991 г. Том 161, № 10
УСПЕХИ ФИЗИЧЕСКИХ НАУК
ИЗ ТЕКУЩЕЙ ЛИТЕРАТУРЫ
533.9
СОВРЕМЕННОЕ СОСТОЯНИЕ ИССЛЕДОВАНИЙ
ПО ФИЗИКЕ ВЗАИМОДЕЙСТВИЯ
МОЩНОГО ЛАЗЕРНОГО ИЗЛУЧЕНИЯ
С ВЫСОКОТЕМПЕРАТУРНОЙ ПЛАЗМОЙ
В. Т. Тихончук
(Физический институт им. П.Н. Лебедева АН СССР)
 
http://data.ufn.ru//ufn91/ufn91_10/129.pdf
 
1990
 
Physics of Fluids B: Plasma Physics -- October 1990 -- Volume 2, Issue 10, pp. 2448-2455
Plasma evolution from laser-driven gold disks. II. Computational design and analysis
D. Ress and L. J. Suter
Lawrence Livermore National Laboratory, P. O. Box 808, L-473, Livermore, California 94550
E. F. Gabl and B. H. Failor
KMS Fusion, Inc., 700 KMS Place, P. O. Box 1567, Ann Arbor, Michigan 48106
 
Plasma evolution from laser-driven gold disks. II. Computational design and analysis
Plasma evolution from laser-driven gold disks. II. Computational design and analysis
 
 
1990
 
Physics of Fluids B: Plasma Physics -- August 1990 -- Volume 2, Issue 8, pp. 1725-1728
Nonlocal heat transport in plasmas down steep temperature gradients
F. Minotti and C. Ferro Fontán
Laboratorio de F ísica del Plasma, Facultad de Ciencias Exactas y Naturales, Universidad de Buenos Aires, Ciudad Universitaria, Pab. I, 1428 Buenos Aires, Argentina
 
Nonlocal heat transport in plasmas down steep temperature gradients
Nonlocal heat transport in plasmas down steep temperature gradients
 
1987
 
J. H. Rogers, Ph.D. dissertation. University of California, Davis, 1987.
"ELECTRON HEAT TRANSPORT IN A MICROWAVE DRIVEN PLASMA"

"ACKNOWLEDGEMENTS

  . . .   This dissertation has been greatly enhanced by the efforts of Z. Abou-Assaleh,  J.P. Matte, and T.W. Johnston who are responsible for the Fokker-Planck International calculations.

 . . ."

 
1987
 
R. BECERRA-ACEVEDO and B. TERREAULT
Nuclear Instruments and Methods in Physics Research B28 (1987) 1-9
North-Holland, Amsterdam
"RANGE AND BACKSCATTERING OF HYDROGEN IONS BELOW ~ 2 keV:
FITS OF THEORY TO DATA AND APPLICATION TO PLASMA-MATERIALS INTERACTIONS"
“ … We thank Z. Abou-Assaleh for assistance with computer programming. …”
 
1986
 
G.G. ROSS  and B. TERREAULT
Nuclear Instruments and Methods in Physics Research 15  (1986) 146-150
"H-, H0, H+ He0, He+ AND He2+ FRACTIONS OF PROJECTILES SCATTERED FROM
14 DIFFERENT MATERIALS AT 30 TO 340 keV"
“ … We acknowledge …., and the assistance of Z. Abou-Assaleh with data Fitting. …”
 

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Articles / Dissertation
with Citations to

 Z. Abou-Assaleh

Theoretical Plasma Physics

 & Controlled Thermonuclear Fusion Energy

 

 

 

 

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