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Titlebook: Laser Surface Treatment of Metals; Clifton W. Draper,Paolo Mazzoldi Book 1986 Martinus Nijhoff Publishers, Dordrecht 1986 metals.treatment

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G. Battaglin,A. Carnera,G. Della Mea,V. Kulkarni,P. Mazzoldi,D. K. Sood,A. P. Pogarnyrealize integrated transceivers for wireless and wired applications. This includes the design of oscillator types as single-phase LC oscillators, I/Q LC oscillators, multi-phase LC oscillators, and ring oscillators in various IC technologies such as bipolar, BiCMOS, CMOS, and SOI (silicon on insulat
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L. G. Dona dalle Roserealize integrated transceivers for wireless and wired applications. This includes the design of oscillator types as single-phase LC oscillators, I/Q LC oscillators, multi-phase LC oscillators, and ring oscillators in various IC technologies such as bipolar, BiCMOS, CMOS, and SOI (silicon on insulat
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Chapter Introductioning tools. However, the overall efficiency of this new technology is limited, in many instances, by the difficulty of obtaining effective coupling between incident laser radiation and the workpiece. High reflectivity, plasma shielding and gas absorption all conspire to reduce the overall coupling of
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Laser Material Interactions of Relevance To Metal Surface Treatmentis of available theoretical descriptions of the absorptivity A and its temperature dependence. Experimental coupling coefficients for cw CO. laser radiation on metals over the range 20–1000°C are reported. The effect of oxidation on these coefficients is discussed. Finally, several methods of increa
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Stimulated Absorption of C02 Laser Light on Metalse of initial surface roughness, which by a stimulated process grows into a coherent periodic corrugation or “ripple” pattern, owing to a nonlinear interaction with surface plasmons. Once developed, this ripple pattern acts as an anti-reflective coating, enabling the full absorption of the incoming r
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Characterization of Laser-Induced Plasmas and Temperature Measurement During Laser Surface Treatmentting and vaporization as in laser surface alloying. Due to short dwell times, high temperatures and steep gradients, it is difficult to measure surface temperatures during laser/target interaction. Processes involving vaporization are more complicated to monitor due to the resulting plasma formation
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Laser/Materials Interactions: CW DF Laser Ablation of Carbonhe intrinsic ablation performance of these materials and to measure their responses and properties under well-characterized laser irradiation conditions. Several hundred experiments were performed over a broad range of intensities in order to determine burnthrough times, reflectances at DF wavelengt
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Chapter Introductionn processes in metals and alloys under these unusual conditions is less developed than in the case of silicon. One reason for this, of course, was the perceived technological importance of laser processing of silicon, which led to a broad-based, concentrated study of this problem. Furthermore, many
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