(for ARFD review / highlights)
1. Publications and Submitted Manuscripts, Referred Journals
[1] A. Anders, “Fundamentals of pulsed plasmas for materials processing,”
Surf. Coat. Technol., vol. 183, pp. 301-311, 2004, LBNL-51683.
[2] A. Anders and R. A. MacGill, “Asymmetric injection of cathodic arc
plasma into a macroparticle filter,” J. Appl. Phys., vol. 95, pp. 7602-7606,
2004, LBNL-54195.
[3] A. Anders and G. Y. Yushkov, “The kinetic energy of carbon ions in
vacuum arc plasmas: A comparison of measuring techniques,” J. Appl. Phys.,
vol. 96, pp. 970-974, 2004, LBNL-54194.
[4] E. Oks, I. Brown, and A. Anders, “Some effects of magnetic field on
a hollow cathode ion source,” Rev. Sci. Instrum., vol. 75, pp. 1030-1033,
2004, LBNL-53529.
[5] P. K. Roy, S. S. Yu, S. Eylon, E. Henestroza, A. Anders, F. M. Bieniosek,
W. G. Greenway, B. G. Logan, W. L. Waldron, D. L. Vanecek, D. R. Welch, D. V.
Rose, R. C. Davidson, P. C. Efthimion, E. P. Gilson, A. B. Sefkow, and W. M.
Sharp, “Results on intense beam focusing and neutralization from the neutralized
beam experiment,” Phys. Plasmas, vol. 11, pp. 2890-2898, 2004, LBNL-53974.
[6] E. Byon, J.-K. Kim, S.-C. Kwon, and A. Anders, “Effect of ion mass
and charge state on transport of vacuum arc plasmas through a biased magnetic
filter,” IEEE Trans. Plasma Sci., vol. 32, pp. 433-439, 2004, LBNL-53728.
[7] A. Anders, “Observation of self-sputtering in energetic condensation
of metal ions,” Appl. Phys. Lett., vol. 85, pp. 6137-6139, 2004, LBNL-55876.
[8] J. Rosén, A. Anders, L. Hultman, and J. M. Schneider, “Charge
state and time resolved plasma composition of a pulsed zirconium in a nitrogen
environment,” J. Appl. Phys., vol. 96, pp. 4793-4799, 2004, LBNL-56277.
[9] A. Anders, “Time-dependence of ion charge state distributions of vacuum
arcs: An interpretation involving atoms and charge exchange collisions,”
IEEE Trans. Plasma Sci., vol. 33, pp. 205-209, 2005, LBNL-56214.
[10] J. Rosén, A. Anders, S. Mráz, and J. M. Schneider, “Charge-state-resolved
ion energy distributions of aluminum vacuum arcs in the absence and presence
of a magnetic field,” J. Appl. Phys., pp. submitted, 2005, LBNL-57297.
[11] A. Anders, K. Fukuda, and G. Y. Yushkov, “Ion charge state fluctuations
in vacuum arcs,” J. Phys. D: Appl. Phys., vol. 38, pp. 1021-1028, 2005,
LBNL-56737.
[12] A. Anders, E. M. Oks, and G. Yu.Yushkov, “Cathodic arcs: Fractal
voltage and cohesive energy rule,” Appl. Phys. Lett., vol. submitted,
2005, LBNL-57025.
[13] A. Anders, “Physics of arcing, and implications to sputter deposition,”
Thin Solid Films, pp. in print, 2005, LBNL-54220-Journal.
[14] E. M. Oks, A. Anders, I. G. Brown, I. A. Soloshenko, and A. I. Shcherdin,
“Instability of a low-pressure hollow-cathode discharge in a magnetic
field (in Russian),” Fizika Plazmy, pp. in print, 2005, LBNL-57306.
[15] S. L. Johnson, P. A. Heimann, A. G. MacPhee, A. M. Lindenberg, O. R. Monteiro,
Z. Chang, R. W. Lee, and R. W. Falcone, “Bonding in liquid carbon studied
by time-resolved x-ray absorption spectroscopy,” Phys. Rev. Lett., vol.
94, pp. 057407-4, 2005.
[16] S. Sangyuenyongpipat, T. Vilaithong, L. D. Yu, A. Verdaguer, I. Ratera,
D. F. Ogletree, O. R. Monteiro, and I. G. Brown, “Metal ion bombardment
of onion skin cell wall,” Nucl. Instrum. Methods Phys. Res. B, vol. 227,
pp. 289–298, 2005, LBNL-57309.
[17] V. P. Mammana, O. R. Monteiro, and L. R. C. Fonseca, “Approach curve
method for large anode-cathode distances,” J. Vac. Sci. Technol. B, vol.
22, 2004.
2. Publications and Submitted Manuscripts, conferences (non-refereed)
[18] A. Anders, “Physics of arcing, and implications to sputter deposition,”
Proceedings of the 5th Int. Conf. Coatings on Glass (ICCG), Saarbrücken,
Germany, 2004, pp. 59-68, LBNL-54220-Conference.
[19] A. Anders, E. M. Oks, G. Y. Yushkov, and I. G. Brown, “Measurement
of total ion flux in vacuum arc discharges,” Proc. of XXIth Int. Symp.
Discharges and Electrical Insulation in Vacuum, Yalta, Ukraine, 2004, pp. 272-275,
LBNL-54682.
[20] A. Anders, “Cathodic arc spots: ignition probability as fundamental
concept to describe spot types, phases, and motion,” Proceedings of the
XXIth Int. Symp. Discharges and Electrical Insulation in Vacuum, Yalta, Ukraine,
2004, pp. 152-155, LBNL-54188.
[20] A. Anders, “Operational and maintenance manual for pulsed cathodic
arc for diamond-like carbon films,” LawrenceBerkeley National Laboratory,
Berkeley, California, February 25, 2005, LBNL/PUB-3182.
Plasma Applications Group Home Page