Laser cleaning II /:
Laser Cleaning II is the second of a series of books reporting research on the use of lasers for cleaning material surfaces and related micro-scale and nano-scale laser processing. It follows Laser Cleaning, edited by Boris Luk'yanchuk, published in 2002. The primary focus is on contaminant par...
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Format: | Elektronisch Tagungsbericht E-Book |
Sprache: | English |
Veröffentlicht: |
Hackensack, NJ :
World Scientific,
©2006.
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Schlagworte: | |
Online-Zugang: | Volltext |
Zusammenfassung: | Laser Cleaning II is the second of a series of books reporting research on the use of lasers for cleaning material surfaces and related micro-scale and nano-scale laser processing. It follows Laser Cleaning, edited by Boris Luk'yanchuk, published in 2002. The primary focus is on contaminant particle removal, nano-scale sized particles in particular, which represents a major cleaning challenge in industrial contexts and poses a broad range of research questions. The contributions provide stimulating answers to these questions, spanning the essential areas: the fundamental theoretical and experi. |
Beschreibung: | "It includes chapters that are original, peer reviewed, research papers, presented at the 4th International Workshop on Laser Cleaning/New Trends in Laser Cleaning III, (IWLC4/NeToLAC III) held in Sydney, in December 2004"--Preface |
Beschreibung: | 1 online resource (xxxi, 288 pages) : illustrations |
Bibliographie: | Includes bibliographical references. |
ISBN: | 9789812706843 9812706844 9812703721 9789812703729 |
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245 | 1 | 0 | |a Laser cleaning II / |c [edited by] D.M. Kane. |
246 | 3 | |a Laser cleaning 2 | |
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504 | |a Includes bibliographical references. | ||
588 | 0 | |a Print version record. | |
505 | 0 | |a List of Contributors; Preface; Tribute to Professor Boris Luk'yanchuk: To Mark his Contributions to Xlll Physics on the Occasion of his 60th Birthday; Determination of the basic parameters related to light scattering by a particle on a surface; Application of near field effects for material processing; Optical and magneto-optical recording; Formation of nanoclusters during laser ablation; Highly multiplexed scanning nanoscopic imaging; Plasmonics; Laser ablation and plume dynamics; Laser thermochemistry; Friend and poet; References; Acknowledgements. | |
505 | 8 | |a Chapter 1 Laser Cleaning and Surface Modifications: Applications in Nano- and Biotechnology D. Bauerle, T. Gumpenberger, D. Brodoceanu, G . Langer, J. Kofler, J. Heitz and K. Piglmayer1. Introduction; 2. Removal of Particulates; 2.1. Dry Laser Cleaning (DLC); 2.1.1. Substrate absorption; 2.1.2. Particulate absorption; 2.1.3. Particulate and substrate absorption; 2.2. Steam Laser Cleaning (SLC); 2.2.1. Absorbing liquidfilms; 2.3. Wet Laser Cleaning (WLC); 3. Submicron- and Nanopatterning; 4. Removal of Contamination Layers; 4.1. Surface polishing and glazing. | |
505 | 8 | |a 4.2. The influence of an ambient medium5. Surface Modifications of PTFE, Applications in Biotechnology; 6. Conclusions; Acknowledgements; References; Chapter 2 An Overview of Experimental Research into the Laser Cleaning of Contaminants from Surfaces A.J. Fernandes and D.M. Kane; 1. An Overview of the Information in the Tables; 2. Categories of Laser Cleaning; 3. Deposition Techniques; 4. Laser Cleaning Efficiency; 5. Laser Characteristics; 6. Analysis Methods; 7. A Review of Laser Cleaning of Contaminants from Surfaces; Acknowledgments; References. | |
505 | 8 | |a Chapter 3 Particle on a Surface: About Possible Acoustic and Plasmonics Effects in Dry Laser Cleaning B.S. Luk'yanchuk, Z.B. Wang, Y. Zhou, M.H. Hong, W.D. Song and T.C. Chong 1. Introduction; 2. Particle on the Surface; 3. Acoustic Effects in Laser Cleaning; 4. Plasmonic Effect in Laser Cleaning of Small Metal Particles; 5. Conclusion; Acknowledgement; References; Chapter 4 Axially Symmetric Focusing of Light in Dry Laser Cleaning and Nanopatterning J. Kofler and N. Arnold; 1. Introduction; 2. The Bessoid Integral; 2.1. Definition; 2.2. Asymptotic expressions; 2.3. Numerical evaluation. | |
505 | 8 | |a 2.4. Geometrical optics for the cuspoid3. Relation between Geometrical and Wave Optics; 3.1. Matching with the Bessoid integral; 3.2. General expressions on and near the axis; 3.3. Angular dependences and vectorial problems: Higher-order Bessoid matching; 4. The Sphere; 4.1. Geometrical optics solution; 4.2. The Bessoid matching solution; 4.3. On the axis; 4.4. Comparison with the theory of Mie; 5. Conclusions; Acknowledgments; References; Chapter 5 Liquid-Assisted Laser Shock Cleaning for Nanoscale Particle Removal D. Jang, B. Oh and D. Kim; 1. Introduction. | |
520 | |a Laser Cleaning II is the second of a series of books reporting research on the use of lasers for cleaning material surfaces and related micro-scale and nano-scale laser processing. It follows Laser Cleaning, edited by Boris Luk'yanchuk, published in 2002. The primary focus is on contaminant particle removal, nano-scale sized particles in particular, which represents a major cleaning challenge in industrial contexts and poses a broad range of research questions. The contributions provide stimulating answers to these questions, spanning the essential areas: the fundamental theoretical and experi. | ||
650 | 0 | |a Lasers |x Industrial applications |v Congresses. | |
650 | 0 | |a Laser beams |x Industrial applications |v Congresses. | |
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700 | 1 | |a Kane, D. M. | |
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contents | List of Contributors; Preface; Tribute to Professor Boris Luk'yanchuk: To Mark his Contributions to Xlll Physics on the Occasion of his 60th Birthday; Determination of the basic parameters related to light scattering by a particle on a surface; Application of near field effects for material processing; Optical and magneto-optical recording; Formation of nanoclusters during laser ablation; Highly multiplexed scanning nanoscopic imaging; Plasmonics; Laser ablation and plume dynamics; Laser thermochemistry; Friend and poet; References; Acknowledgements. Chapter 1 Laser Cleaning and Surface Modifications: Applications in Nano- and Biotechnology D. Bauerle, T. Gumpenberger, D. Brodoceanu, G . Langer, J. Kofler, J. Heitz and K. Piglmayer1. Introduction; 2. Removal of Particulates; 2.1. Dry Laser Cleaning (DLC); 2.1.1. Substrate absorption; 2.1.2. Particulate absorption; 2.1.3. Particulate and substrate absorption; 2.2. Steam Laser Cleaning (SLC); 2.2.1. Absorbing liquidfilms; 2.3. Wet Laser Cleaning (WLC); 3. Submicron- and Nanopatterning; 4. Removal of Contamination Layers; 4.1. Surface polishing and glazing. 4.2. The influence of an ambient medium5. Surface Modifications of PTFE, Applications in Biotechnology; 6. Conclusions; Acknowledgements; References; Chapter 2 An Overview of Experimental Research into the Laser Cleaning of Contaminants from Surfaces A.J. Fernandes and D.M. Kane; 1. An Overview of the Information in the Tables; 2. Categories of Laser Cleaning; 3. Deposition Techniques; 4. Laser Cleaning Efficiency; 5. Laser Characteristics; 6. Analysis Methods; 7. A Review of Laser Cleaning of Contaminants from Surfaces; Acknowledgments; References. Chapter 3 Particle on a Surface: About Possible Acoustic and Plasmonics Effects in Dry Laser Cleaning B.S. Luk'yanchuk, Z.B. Wang, Y. Zhou, M.H. Hong, W.D. Song and T.C. Chong 1. Introduction; 2. Particle on the Surface; 3. Acoustic Effects in Laser Cleaning; 4. Plasmonic Effect in Laser Cleaning of Small Metal Particles; 5. Conclusion; Acknowledgement; References; Chapter 4 Axially Symmetric Focusing of Light in Dry Laser Cleaning and Nanopatterning J. Kofler and N. Arnold; 1. Introduction; 2. The Bessoid Integral; 2.1. Definition; 2.2. Asymptotic expressions; 2.3. Numerical evaluation. 2.4. Geometrical optics for the cuspoid3. Relation between Geometrical and Wave Optics; 3.1. Matching with the Bessoid integral; 3.2. General expressions on and near the axis; 3.3. Angular dependences and vectorial problems: Higher-order Bessoid matching; 4. The Sphere; 4.1. Geometrical optics solution; 4.2. The Bessoid matching solution; 4.3. On the axis; 4.4. Comparison with the theory of Mie; 5. Conclusions; Acknowledgments; References; Chapter 5 Liquid-Assisted Laser Shock Cleaning for Nanoscale Particle Removal D. Jang, B. Oh and D. Kim; 1. Introduction. |
ctrlnum | (OCoLC)173282226 |
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dewey-search | 621.36/6 |
dewey-sort | 3621.36 16 |
dewey-tens | 620 - Engineering and allied operations |
discipline | Elektrotechnik / Elektronik / Nachrichtentechnik |
format | Electronic Conference Proceeding eBook |
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physical | 1 online resource (xxxi, 288 pages) : illustrations |
psigel | ZDB-4-EBA |
publishDate | 2006 |
publishDateSearch | 2006 |
publishDateSort | 2006 |
publisher | World Scientific, |
record_format | marc |
spelling | International Workshop on Laser Cleaning (4th : 2004 : Sydney, Australia) Laser cleaning II / [edited by] D.M. Kane. Laser cleaning 2 Hackensack, NJ : World Scientific, ©2006. 1 online resource (xxxi, 288 pages) : illustrations text txt rdacontent computer c rdamedia online resource cr rdacarrier "It includes chapters that are original, peer reviewed, research papers, presented at the 4th International Workshop on Laser Cleaning/New Trends in Laser Cleaning III, (IWLC4/NeToLAC III) held in Sydney, in December 2004"--Preface Includes bibliographical references. Print version record. List of Contributors; Preface; Tribute to Professor Boris Luk'yanchuk: To Mark his Contributions to Xlll Physics on the Occasion of his 60th Birthday; Determination of the basic parameters related to light scattering by a particle on a surface; Application of near field effects for material processing; Optical and magneto-optical recording; Formation of nanoclusters during laser ablation; Highly multiplexed scanning nanoscopic imaging; Plasmonics; Laser ablation and plume dynamics; Laser thermochemistry; Friend and poet; References; Acknowledgements. Chapter 1 Laser Cleaning and Surface Modifications: Applications in Nano- and Biotechnology D. Bauerle, T. Gumpenberger, D. Brodoceanu, G . Langer, J. Kofler, J. Heitz and K. Piglmayer1. Introduction; 2. Removal of Particulates; 2.1. Dry Laser Cleaning (DLC); 2.1.1. Substrate absorption; 2.1.2. Particulate absorption; 2.1.3. Particulate and substrate absorption; 2.2. Steam Laser Cleaning (SLC); 2.2.1. Absorbing liquidfilms; 2.3. Wet Laser Cleaning (WLC); 3. Submicron- and Nanopatterning; 4. Removal of Contamination Layers; 4.1. Surface polishing and glazing. 4.2. The influence of an ambient medium5. Surface Modifications of PTFE, Applications in Biotechnology; 6. Conclusions; Acknowledgements; References; Chapter 2 An Overview of Experimental Research into the Laser Cleaning of Contaminants from Surfaces A.J. Fernandes and D.M. Kane; 1. An Overview of the Information in the Tables; 2. Categories of Laser Cleaning; 3. Deposition Techniques; 4. Laser Cleaning Efficiency; 5. Laser Characteristics; 6. Analysis Methods; 7. A Review of Laser Cleaning of Contaminants from Surfaces; Acknowledgments; References. Chapter 3 Particle on a Surface: About Possible Acoustic and Plasmonics Effects in Dry Laser Cleaning B.S. Luk'yanchuk, Z.B. Wang, Y. Zhou, M.H. Hong, W.D. Song and T.C. Chong 1. Introduction; 2. Particle on the Surface; 3. Acoustic Effects in Laser Cleaning; 4. Plasmonic Effect in Laser Cleaning of Small Metal Particles; 5. Conclusion; Acknowledgement; References; Chapter 4 Axially Symmetric Focusing of Light in Dry Laser Cleaning and Nanopatterning J. Kofler and N. Arnold; 1. Introduction; 2. The Bessoid Integral; 2.1. Definition; 2.2. Asymptotic expressions; 2.3. Numerical evaluation. 2.4. Geometrical optics for the cuspoid3. Relation between Geometrical and Wave Optics; 3.1. Matching with the Bessoid integral; 3.2. General expressions on and near the axis; 3.3. Angular dependences and vectorial problems: Higher-order Bessoid matching; 4. The Sphere; 4.1. Geometrical optics solution; 4.2. The Bessoid matching solution; 4.3. On the axis; 4.4. Comparison with the theory of Mie; 5. Conclusions; Acknowledgments; References; Chapter 5 Liquid-Assisted Laser Shock Cleaning for Nanoscale Particle Removal D. Jang, B. Oh and D. Kim; 1. Introduction. Laser Cleaning II is the second of a series of books reporting research on the use of lasers for cleaning material surfaces and related micro-scale and nano-scale laser processing. It follows Laser Cleaning, edited by Boris Luk'yanchuk, published in 2002. The primary focus is on contaminant particle removal, nano-scale sized particles in particular, which represents a major cleaning challenge in industrial contexts and poses a broad range of research questions. The contributions provide stimulating answers to these questions, spanning the essential areas: the fundamental theoretical and experi. Lasers Industrial applications Congresses. Laser beams Industrial applications Congresses. Lasers Applications industrielles Congrès. Faisceaux laser Applications industrielles Congrès. TECHNOLOGY & ENGINEERING Lasers & Photonics. bisacsh Laser beams Industrial applications fast Lasers Industrial applications fast Conference papers and proceedings fast Kane, D. M. Print version: International Workshop on Laser Cleaning (4th : 2004 : Sydney, Australia). Laser cleaning II. Hackensack, NJ : World Scientific, ©2006 9812703721 9789812703729 (DLC) 2007278689 (OCoLC)171287789 FWS01 ZDB-4-EBA FWS_PDA_EBA https://search.ebscohost.com/login.aspx?direct=true&scope=site&db=nlebk&AN=203839 Volltext |
spellingShingle | Laser cleaning II / List of Contributors; Preface; Tribute to Professor Boris Luk'yanchuk: To Mark his Contributions to Xlll Physics on the Occasion of his 60th Birthday; Determination of the basic parameters related to light scattering by a particle on a surface; Application of near field effects for material processing; Optical and magneto-optical recording; Formation of nanoclusters during laser ablation; Highly multiplexed scanning nanoscopic imaging; Plasmonics; Laser ablation and plume dynamics; Laser thermochemistry; Friend and poet; References; Acknowledgements. Chapter 1 Laser Cleaning and Surface Modifications: Applications in Nano- and Biotechnology D. Bauerle, T. Gumpenberger, D. Brodoceanu, G . Langer, J. Kofler, J. Heitz and K. Piglmayer1. Introduction; 2. Removal of Particulates; 2.1. Dry Laser Cleaning (DLC); 2.1.1. Substrate absorption; 2.1.2. Particulate absorption; 2.1.3. Particulate and substrate absorption; 2.2. Steam Laser Cleaning (SLC); 2.2.1. Absorbing liquidfilms; 2.3. Wet Laser Cleaning (WLC); 3. Submicron- and Nanopatterning; 4. Removal of Contamination Layers; 4.1. Surface polishing and glazing. 4.2. The influence of an ambient medium5. Surface Modifications of PTFE, Applications in Biotechnology; 6. Conclusions; Acknowledgements; References; Chapter 2 An Overview of Experimental Research into the Laser Cleaning of Contaminants from Surfaces A.J. Fernandes and D.M. Kane; 1. An Overview of the Information in the Tables; 2. Categories of Laser Cleaning; 3. Deposition Techniques; 4. Laser Cleaning Efficiency; 5. Laser Characteristics; 6. Analysis Methods; 7. A Review of Laser Cleaning of Contaminants from Surfaces; Acknowledgments; References. Chapter 3 Particle on a Surface: About Possible Acoustic and Plasmonics Effects in Dry Laser Cleaning B.S. Luk'yanchuk, Z.B. Wang, Y. Zhou, M.H. Hong, W.D. Song and T.C. Chong 1. Introduction; 2. Particle on the Surface; 3. Acoustic Effects in Laser Cleaning; 4. Plasmonic Effect in Laser Cleaning of Small Metal Particles; 5. Conclusion; Acknowledgement; References; Chapter 4 Axially Symmetric Focusing of Light in Dry Laser Cleaning and Nanopatterning J. Kofler and N. Arnold; 1. Introduction; 2. The Bessoid Integral; 2.1. Definition; 2.2. Asymptotic expressions; 2.3. Numerical evaluation. 2.4. Geometrical optics for the cuspoid3. Relation between Geometrical and Wave Optics; 3.1. Matching with the Bessoid integral; 3.2. General expressions on and near the axis; 3.3. Angular dependences and vectorial problems: Higher-order Bessoid matching; 4. The Sphere; 4.1. Geometrical optics solution; 4.2. The Bessoid matching solution; 4.3. On the axis; 4.4. Comparison with the theory of Mie; 5. Conclusions; Acknowledgments; References; Chapter 5 Liquid-Assisted Laser Shock Cleaning for Nanoscale Particle Removal D. Jang, B. Oh and D. Kim; 1. Introduction. Lasers Industrial applications Congresses. Laser beams Industrial applications Congresses. Lasers Applications industrielles Congrès. Faisceaux laser Applications industrielles Congrès. TECHNOLOGY & ENGINEERING Lasers & Photonics. bisacsh Laser beams Industrial applications fast Lasers Industrial applications fast |
title | Laser cleaning II / |
title_alt | Laser cleaning 2 |
title_auth | Laser cleaning II / |
title_exact_search | Laser cleaning II / |
title_full | Laser cleaning II / [edited by] D.M. Kane. |
title_fullStr | Laser cleaning II / [edited by] D.M. Kane. |
title_full_unstemmed | Laser cleaning II / [edited by] D.M. Kane. |
title_short | Laser cleaning II / |
title_sort | laser cleaning ii |
topic | Lasers Industrial applications Congresses. Laser beams Industrial applications Congresses. Lasers Applications industrielles Congrès. Faisceaux laser Applications industrielles Congrès. TECHNOLOGY & ENGINEERING Lasers & Photonics. bisacsh Laser beams Industrial applications fast Lasers Industrial applications fast |
topic_facet | Lasers Industrial applications Congresses. Laser beams Industrial applications Congresses. Lasers Applications industrielles Congrès. Faisceaux laser Applications industrielles Congrès. TECHNOLOGY & ENGINEERING Lasers & Photonics. Laser beams Industrial applications Lasers Industrial applications Conference papers and proceedings |
url | https://search.ebscohost.com/login.aspx?direct=true&scope=site&db=nlebk&AN=203839 |
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