2000 Related Publications

T. Aytug, J. Z. Wu, C. Cantoni, D. T. Verebelyi, E. D. Specht, M. Paranthaman, D. P. Norton, D. K. Christen, R. E. Ericson, and C. L. Thomas, “Growth and Superconducting Properties of YBa2Cu3O7-d Films on Conductive SrRuO3 and LaNiO3 Multilayers for Coated Conductor Applications,” Appl. Phys. Lett. 4, 279 (2000).

H. M. Christen, K. S. Harshavardhan, M. F. Chisholm, E. D. Specht, J. D. Budai, D. P. Norton, L. A. Boatner, and I. J. Pickering, “The Effect of Size, Strain, and Long-Range Interactions on Ferroelectric Phase Transitions in KtaO3/KNbO3 Superlattices Studied by X-Ray, EXAFS, and Dielectric Measurements,” J Electroceram. 4, 279 (2000).

D. B. Geohegan, A. A. Puretzky, X. Fan, M. A. Guillorn, M. L. Simpson, V. I. Merkulov, and S. J. Pennycook, “In Situ Plasma Diagnostic Investigations of Single-Wall Carbon Nanotube Synthesis by Laser Ablation of C-Ni-Co Targets,” SPIE-Int. Soc. Opt. Eng. 3935, 2 (2000).

D. B. Geohegan, A. A. Puretzky, X. Fan, M. A. Guillorn, M. L. Simpson, V. I. Merkulov, and S. J. Pennycook, “Mechanisms of Single-Wall Carbon Nanotube Growth by the Laser Vaporization Technique: In situ Imaging and Spectroscopy,” p. 3 in Amorphous and Nanostructured Carbon, ed. by T. Allen, B. F. Coll, J. Robertson, J. P. Sullivan, and O. Zhou, Material Research Society Warrendale, Pennsylvania, 2000.

G. E. Jellison, Jr., “Ellipsometry,” p. 402 in Encyclopedia of Spectroscopy and Spectrometry, Academic Press, Ltd., London, England, 2000.

G. E. Jellison, Jr., V. I. Merkulov, A. A. Puretzky, D. B. Geohegan, G. Eres, D. H. Lowndes, and J. B. Caughman, “Characterization of Thin-Film Amorphous Semiconductors Using Spectroscopic Ellipsometry,” Thin Solid Films 377–378, 68 (2000).

J. N. Leboeuf, R. F. Wood, K. R. Chen, D. B. Geohegan, A. A. Puretzky, “Computer Modeling of the Interaction of a Laser-Ablated Plume with an Ambient Background Gas,” SPIE-Int. Soc. Opt. Eng. 3935, 48 (2000).

Y. E. Lee, D. P. Norton, J. D. Budai, C.M. Rouleau, and J.-W. Park, “Epitaxial Growth and Luminescent Properties of Mn2+-Activated ZnGa2O4 Films,” J. Electroceram. 4, 293 (2000).

Y. E. Lee, D. P. Norton, J. D. Budai, P. D. Rack, and M. D. Potter, “Photo- and Cathodoluminescence Characteristics of Blue Light Emitting Epitaxial Sr2CeO4 Thin-Film Phosphors,” Appl. Phys. Lett. 77, 678 (2000).

D. H. Lowndes, “Hyperthermal Pulsed-Laser Ablation Beams for Film Deposition and Surface Microstructural Engineering,” p. 232 in Proceedings of The Third Symposium on Advanced Photon Processing and Measurement Technologies, R&D Institute for Photonic Engineering, Tokyo, Japan, 2000.

D. H. Lowndes, “Nanotechnology Overview,” Adv. Mater. Process. 157, 48 (2000).

D. H. Lowndes, V. I. Merkulov, L. R. Baylor, G. E. Jellison, Jr., D. B. Poker, S. Kim, M. H. Sohn, and N. W. Paik, “Field Emission from Carbon Films Deposited by Controlled Low-Energy Beams and CVD Sources,” p. 271 in Fundamental Mechanisms of Low-Energy-Beam-Modified Surface Growth and Processing, ed. by E. Chason, T. D. de la Rubia, J. M. E. Harper, and R. Murty, Materials Research Society, Warrendale, Pennsylvania, 2000.

B. S. Luk`yanchuk, N. A. Kirichenko, A. A. Puretzky, and D. B. Geohegan, “Dynamics of the Vapor Plumes Produced by the MALDI Technique,” SPIE-Int. Soc. Opt. Eng. 4070, 166 (2000).

V. I. Merkulov, D. H. Lowndes, and L. R. Baylor, “Field Emission and Nanostructure of Carbon Films,” p. 221 in Amorphous and Nanostructured Carbon Symposium, ed. by T. Allen, B. Coll, J. Robertson, J. Sullivan, and O. Zhou, Materials Research Society, Warrendale, Pennsylvania, 2000.

V. I. Merkulov, D. H. Lowndes, Y. Y. Wei, and G. Eres, “Patterned Growth of Individual and Multiple Vertically Aligned Carbon Nanotubes,” Appl. Phys. Lett. 76, 3555 (2000).

M. Noh, G. E. Jellison, Jr., F. Namavar, and H. H. Weitering, “Isolation of a Metallic Si(111)7x7 Surface Reconstruction via Separation by Implanted Oxygen,” Appl. Phys. Lett. 76, 733 (2000).

D. P. Norton, C. Park, Y. E. Lee, J. D. Budai, M. F. Chisholm, D. T. Verebelyi, D. K. Christen, and D. M. Kroeger, “Pulsed-Laser Deposition of Electronic Oxides: Superconductor and Semiconductor Applications,” p. 124 in Proceedings of the SPIE Conference on Laser Applications in Microelectronic and Optoelectronic Manufacturing V, San Jose, California, 2000.

D. P. Norton, J. D. Budai, and M. F. Chisholm, “Epitaxial Electronic Oxides on Semiconductors Using Pulsed-Laser Deposition,” p. 3.7.1 in Substrate Engineering— Paving the Way to Epitaxy, ed. by D. P. Norton, D. G. Schlom, N. Newman, and D. H. Matthiesen, Materials Research Society, Warrendale, Pennsylvania, 2000.

D. P. Norton, J. D. Budai, and M. F. Chisholm, “Hydrogen-Assisted Pulsed-Laser Deposition of (001)CeO2 on (001)Ge,” Appl. Phys. Lett. 76, 1677 (2000).

V. Pant, R. G. Goodrich, M. G. Godbole, and D. H. Lowndes, “Radiofrequency Impedance Measurements at 2 MHz on YBa2Cu3O7 Epitaxial Films,” Philos. Mag. B, Phys. Condens. Matter Stat. Mech. Electron. Opt. Magn. Prop. 80, 1961 (2000).

A. A. Puretzky, D. B. Geohegan, X. Fan, and S. J. Pennycook, “Dynamics of Single-Wall Carbon Nanotube Synthesis by Laser Vaporization,” Appl. Phys. A 70, 153 (2000).

S. D. Silliman, H.-M. Christen, L. A. Knauss, K. S. Harshavardhan, M. M. A. El Sabbagh, and K. Zaki, “Magnetically Tunable Microwave Filters Based on YBCO/YIG/GGG Heterostructures,” J. Electroceramics 4, 305 (2000).

W. E. Vanderlinde, M. E. Cheney, E. B. McDaniel, K. L. Skinner, L. A. Knauss, B. M. Frazier, and H. M. Christen, “Localizing Power to Ground Shorts in a Chips-First MCM by Scanning SQUID Microscopy,” p. 413 in Proceedings of the 38th Annual 2000 IEEE International Reliability Physics Symposium Proceedings, San Jose, California, 2000.

Y. Y. Wei and G. Eres, “Direct Fabrication of Carbon Nanotube Circuits by Selective Area Chemical Vapor Deposition on Pre-Patterned Structures,” Nanotechnology 11, 61 (2000).

Y. Y. Wei and G. Eres, “Directed Assembly of Carbon Nanotube Electronic Circuits,” Appl. Phys. Lett. 76 3759 (2000).

Y. Y. Wei and G. Eres, “Self-Limiting Behavior of Scanning-Electron-Beam-Induced Local Oxidation of Hydrogen-Passivated Silicon,” Appl. Phys. Lett. 76, 941 (2000).

Y. Y. Wei, X. Fan, and G. Eres, “Directed Assembly of Carbon Nanotube Electronic Circuits by Selective Area Chemical Vapor Deposition on Prepatterned Catalyst Electrode Structures,” J. Vac. Sci. Technol. B 18 3586 (2000).

R. F. Wood, J. N. Leboeuf, D. B. Geohegan, A. A. Puretzky, and K. R. Chen, “Aspects of Nanoparticle Formation During Pulsed-Laser Ablation,” SPIE-Int. Soc. Opt. Eng. 3935, 57 (2000).

C.-Y. Yang, A. Pashitski, A. Polyanskii, D. C. Larbalestier, S. E. Babcock, A. Goyal, F. A. List, C. Park, M. Paranthaman, D. P. Norton, D. F. Lee, and D. M. Kroeger, “Microstructural Homogeneity and Electromagnetic Connectivity of YBa2Cu3O7-d Grown on Rolling-Assisted Biaxially Textured Coated Conductor Substrates,” Physica C 329 114 (2000).

S. Zhu, C.-H. Su, S. L. Lehoczky, M. A. George, and D. H. Lowndes, “Surface Texture and Structure of ZnO Films Synthesized by Off-Axis Sputtering Deposition,” J. Mater. Res. 15, 1125 (2000).




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