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1
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36449009052
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Scaling Laws for Diamond Chemical Vapor Deposition. I. Diamond Surface Chemistry
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D.G. Goodwin, “Scaling Laws for Diamond Chemical Vapor Deposition. I. Diamond Surface Chemistry,” J. Appl. Phys. 74, 6888 (1993).
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Goodwin, D.G.1
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Scaling Laws for Diamond Chemical Vapor Deposition. Atmoic Hydrogen Transport
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D.G. Goodwin, “Scaling Laws for Diamond Chemical Vapor Deposition. Atmoic Hydrogen Transport,” J. Appl. Phys. 74, 6895 (1993).
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Goodwin, D.G.1
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Nonequilibrium Effects in Thermal Plasma Chemistry
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C.H. Kruger, “Nonequilibrium Effects in Thermal Plasma Chemistry,” Plasma Chem. And Plasma Proc. 9, 435 (1989).
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Kruger, C.H.1
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Substrate Bias Effect on Diamond Deposition by DC Arcjet
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M. Matsumoto, I. Hosoya, and T. Chounan, “Substrate Bias Effect on Diamond Deposition by DC Arcjet,” Japanese Jour. of Appl. Phys. 29, 2082 (1990).
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Matsumoto, M.1
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5
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0001736492
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Increased Deposition Rate of Chemically Vapor Deposited Diamond in a DC Arcjet with a Secondary Discharge
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S.K. Baldwin Jr., T.G. Owano, and C.H. Kruger, “Increased Deposition Rate of Chemically Vapor Deposited Diamond in a DC Arcjet with a Secondary Discharge,” to appear in Appl. Phys. Lett., (1995).
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To Appear in Appl. Phys. Lett
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Baldwin, S.K.1
Owano, T.G.2
Kruger, C.H.3
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6
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0027665990
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Parametric Study of Atmospheric-Pressure Diamond Synthesis with an Inductively Coupled Plasma Torch
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T.G. Owano and C.H. Kruger, “Parametric Study of Atmospheric-Pressure Diamond Synthesis with an Inductively Coupled Plasma Torch,” Plasma Chem. and Plasma Proc. 13, 433 (1993).
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Plasma Chem. and Plasma Proc
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Owano, T.G.1
Kruger, C.H.2
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7
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0000577394
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Atomic Carbon Vapor as a Diamond Growth Precursor in Thermal Plasmas
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B.W. Wu and S.L. Girshick, “Atomic Carbon Vapor as a Diamond Growth Precursor in Thermal Plasmas,” J. of Appl. Phys. 75, 3914 (1993).
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Wu, B.W.1
Girshick, S.L.2
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8
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0003418851
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Diamond Film Synthesis on Mo in Thermal RF Plasma
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R. Hernberg, T. Lepisto, T. Mantyla, T. Stenberg, and J. Vattulainen, “Diamond Film Synthesis on Mo in Thermal RF Plasma,” Diamond and Related Materials 1, 255 (1992).
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Diamond and Related Materials
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Hernberg, R.1
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Stenberg, T.4
Vattulainen, J.5
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9
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21844487964
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Growth Rate Studies of CVD Diamond in an RF Plasma Torch
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S.K. Baldwin, T.G. Owano, and C.H. Kruger, “Growth Rate Studies of CVD Diamond in an RF Plasma Torch,” Plasma Chem. and Plasma Proc. 14, 383 (1994).
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(1994)
Plasma Chem. and Plasma Proc
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Baldwin, S.K.1
Owano, T.G.2
Kruger, C.H.3
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10
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0027585859
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Degenerate Four-Wave Mixing Diagnostics of Atmospheric Pressure Diamond Deposition
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T.G. Owano, C.H. Kruger, D.S. Green, S. Williams, and R.N. Zare, “Degenerate Four-Wave Mixing Diagnostics of Atmospheric Pressure Diamond Deposition,” Diamond and Related Materials 2, 661 (1993).
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Diamond and Related Materials
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Owano, T.G.1
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Williams, S.4
Zare, R.N.5
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11
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0027555769
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Boundary Layer Profiles in Plasma Chemical Vapor Deposition
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D.S. Green, T.G. Owano, S. Williams, D.G. Goodwin, R.N. Zare, and C.H. Kruger, “Boundary Layer Profiles in Plasma Chemical Vapor Deposition,” Science 259, 1726 (1993).
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Science
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Green, D.S.1
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Williams, S.3
Goodwin, D.G.4
Zare, R.N.5
Kruger, C.H.6
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12
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5244258508
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Degenerate Four-Wave Mixing as a Spectroscopic Probe of Atmospheric Pressure Reacting Plasmas
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T.G. Owano, E.H. Wahl, C.H. Kruger, D.S. Green, and R.N. Zare, “Degenerate Four-Wave Mixing as a Spectroscopic Probe of Atmospheric Pressure Reacting Plasmas,” Proceedings of the 11th International Symposium on Plasma Chemistry 1, 416 (1993).
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(1993)
Proceedings of the 11Th International Symposium on Plasma Chemistry
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Owano, T.G.1
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Kruger, C.H.3
Green, D.S.4
Zare, R.N.5
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13
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0000079667
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Detection of Trace Species in Hostile Environments Using Degenerate Four-Wave Mixing: CH in an Atmospheric Pressure Flame
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S. Williams, D.S. Green, S. Sethuraman, and R.N. Zare, “Detection of Trace Species in Hostile Environments Using Degenerate Four-Wave Mixing: CH in an Atmospheric Pressure Flame,” J. Am. Chem. Soc. 114, 9122 (1992).
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Williams, S.1
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Zare, R.N.4
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14
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84963549828
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Measurements of Nonequilibrium Effects in Thermal Plasmas
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C.H. Kruger, M.H. Gordon, and T.G. Owano, “Measurements of Nonequilibrium Effects in Thermal Plasmas,” J. of Pure and Appl. Chem. 64, 637 (1992).
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J. of Pure and Appl. Chem
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Kruger, C.H.1
Gordon, M.H.2
Owano, T.G.3
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15
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0001539466
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Numerical Modeling of the Filament Assisted Diamond Growth Environment
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D.G. Goodwin, and G.G. Gavillet, “Numerical Modeling of the Filament Assisted Diamond Growth Environment,” J. Appl. Phys. 68, 6393 (1990).
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Goodwin, D.G.1
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