Novel optical materials Francesco Simoni, Iam-Choon Khoo, Cesare Umeton
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[2024]
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volume 1 |
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020 | |a 9789811280597 |9 978-981-12-8059-7 | ||
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245 | 1 | 0 | |a Novel optical materials |c editors: Iam-Choon Khoo, The Pennsylvania State University , USA, Francesco Simoni, Università Politecnica della Marche, Italy, Cesare Umeton, Università della Calabria, Italy |
264 | 1 | |a New Jersey ; London ; Singapore ; Beijing ; Shanghai ; Hong Kong ; Taipei ; Chennai ; Tokyo |b World Scientific |c [2024] | |
300 | |a xvii, 303 Seiten |b Illustrationen, Diagramme | ||
336 | |b txt |2 rdacontent | ||
337 | |b n |2 rdamedia | ||
338 | |b nc |2 rdacarrier | ||
490 | 1 | |a Optical materials and applications |v volume 1 | |
700 | 1 | |a Khoo, Iam-Choon |d 1949- |0 (DE-588)1055759042 |4 edt | |
700 | 1 | |a Simoni, Francesco |0 (DE-588)1171955537 |4 edt | |
700 | 1 | |a Umeton, Cesare |4 edt | |
776 | 0 | 8 | |i Erscheint auch als |n Online-Ausgabe (ebook for institutions) |z 978-981-12-8060-3 |
776 | 0 | 8 | |i Erscheint auch als |n Online-Ausgabe (ebook for individuals) |z 978-981-12-8061-0 |
830 | 0 | |a Optical materials and applications |v volume 1 |w (DE-604)BV049784303 |9 1 | |
856 | 4 | 2 | |m Digitalisierung UB Bayreuth - ADAM Catalogue Enrichment |q application/pdf |u http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=035043159&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |3 Inhaltsverzeichnis |
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© 2024 World Scientific Publishing Company https://doi.org/10.1142/9789811280603_fmatter Contents Preface Introduction: NOMA: Scientific and Human Uniqueness Chapter 1. Optical Properties and Emerging Phenomena of Two-Dimensional Materials v xiii 1 Kunyan Zhang, Arpit Jain, Wenjing Wu, Jeewan Ranasinghe, Ziyang Wang, and Shengxi Huang 1 Introduction to 2D Materials. 1.1 Characteristics of 2D materials. 1.2 Examples of 2D materials. 2 Fabrication of 2D Materials and Heterostructures. 3 Optical Properties of 2D Materials. 3.1 Light absorption. 3.2 Excitons . 3.3 Optical phonons. 4 Emerging Optical Phenomena. 4.1 Moiré exciton. 4.2 Moiré phonon . 4.3 Single photon emission . 4.4 Polariton. 5 Optical Applications of 2D Materials. 5.1 Applications in optoelectronics . 5.2 Applications in healthcare. 6 Outlooks on
Machine Learning. References. 1 2 3 4 7 7 8 10 11 12 13 15 15 16 16 18 21 23
Contents viii Chapter 2. Optothermal Marangoni Effect: Phenomena and Applications 31 Andrzej Miniewicz, Stanislaw Bartkiewicz, Monika Belej, Katarzyna Grzeskiewicz, and Michalina élemp 1 2 Introduction. 32 Physics of Marangoni Effect. 33 2.1 Brief history of Marangoni effect and its impact . 33 2.2 Surface tension and Marangoni effects. 34 2.3 Navier-Stokes and heat transfer equations . 37 3 Numerical Simulations and Experiments on Marangoni Effect in 2D. 39 3.1 Simple 2D simulation of thermocapillary Marangoni effect. 39 3.2 2D Marangoni effects viewed experimentally . 42 3.3 Creation and manipulation of gas bubbles with optothermal Marangoni effect. 43 4 Experiments on Marangoni Effect in 3D. 48 4.1 Droplets and crystal growth in gas bubbles. 48 4.2 Manipulation of droplets via optothermal Marangoni effect. 50 4.3 Marangoni swimmers. 52 4.4 3D liquid-free surface actuation by laser beam . 57 4.5 Hydrodynamic trap. 59 4.6 Two-phase liquid systems including liquid crystals and
polymers. 60 5 Applications of Marangoni Effect. 61 6 Conclusions. 62 Acknowledgment. 62 References. 63 Chapter 3. Molecular Alignment Patterning Enabled by Novel Photopolymerization with Structured Light and its Optical Applications 71 Sayuri Hashimoto, Kyohei Hisano, Miho Aizawa, and Atsushi Shishido 1 2 Introduction. A Novel Concept of Photoalignment Method Enabled by Molecular Diffusion 72 75
Contents ix The Detailed Mechanism of Molecular Alignment bySWaP . 78 4 Versatility of Polymerization System in SWaP for Uniform Molecular and Mesoscopic Alignment. 82 5 Two-dimensional Alignment Patterning and its Potential Applications toOptics. 86 6 Conclusion . References. 88 88 3 Chapter 4. Nonlinear Optical Propagation in Heliconical Cholesteric Liquid Crystals 93 Ashot H. Gevorgyan and Francesco Simoni 1 Introduction. 2 Electromagnetic Treatment of LightPropagation. 3 Optical Reorientation in ChOH. 4 Nonlinear Light Propagation atConstant Intensity. 5 Multilayer Approach. 6 Conclusions. References. Chapter 5. Liquid Crystals for Displays, Smart Windows, Tunable Metamaterials, Plasmonic Nanostructures, Micro-ring Resonators, and Ultrafast Laser Manipulations 94 97 100 104 108 116 118 121 L C. Khoo and T.-H. Lin 1 2 3
Introduction. Optical Properties of Liquid Crystals — General Discussion. 123 2.1 Molecular electronic responses to optical fields . 2.2 Linear optical response and refractive indices. 2.3 Nonlinear optical responses and intensity-dependent refractive index change. 2.4 Electro-optical responses of liquid crystals — A brief introduction. 129 2.5 Optical properties of chiral nematic [cholesteric] liquid crystal — A IDphotonic crystal. Photonics Applications. 3.1 Displays and smart windows. 121 124 125 126 131 133 133
Contents X 3.2 Tunable near-zero and negative index of refraction; metamaterials and metasurfaces. 136 3.3 Tunable plasmonic nanostructures, micro-ring resonators, enhanced nonlinearity, and spontaneous emission. 139 3.4 Cholesteric liquid crystals for polarization rotation of complex laser vector fields and ultrafast (ps-fs) laser pulse modulation. 141 References. Chapter 6. Plasmonic-based Biosensors for the Rapid Detection of Harmful Pathogens 146 155 Francesca Petronella. Daria Stoia, Yasamin Ziai, Federica Zaccagnini, Viviana Scognamiglio, Dana Maniu, Chiara Rinoldi, Monica Focsan, Amina Antonacci, Filippo Pierini and Luciano De Sio 1 2 3 Introduction. Refractometric Biosensors. SERS-based Techniques for Pathogen Detection. 3.1 SERS-based plasmonic (nano)sensors for bacteria detection. 164 3.2 SERS-based plasmonic (nano)sensors for virus detection. 170 4 Electrochemical Biosensors . 5 Biosensors on Flexible Substrates. 5.1 Electrospun nanofibers . 5.2
Other substrates. 6 Future Perspectives. Appendix: Optical Properties of Plasmonic Nanoparticles . Acknowledgments. References. Chapter 7. A Double Plasmonic/Photonic Approach for Multilevel Anticounterfeit and Food Safety Applications Antonio De Luca. Vincenzo Caligiuri, Aniket Patra, Maria P. De Santo, Agostino Forestiero, Giuseppe Papuzzo, Dante Μ. Aceti, Giuseppe E. Lio, and Riccardo Barberi 156 157 162 172 176 177 180 181 182 185 185 195
Contents xi Introduction. 196 The Double Plasmonic/Photonic Approach. 200 2.1 The first physical unclonable function level: The chromatic signature. 201 2.2 Morphological and plasmonic characterization of Ag nano-islands. 204 2.3 The second physical unclonable function level: The spectral signature. 204 2.4 The third physical unclonable function level: The morphological signature. 208 2.5 Irreversible thermal switching in the field of food safety applications. 212 3 Experimental Methods. 215 3.1 Ag and Ito sputtering deposition parameters. 215 3.2 Ag nano-islands sputtering deposition. 216 3.3 CIE 1931 and CIELAB colorspace analysis. 216 3.4 Ellispometrical and smartphone LED flashlamp characterization of the spectral response of MIN structures. 216 3.5 Temperature varying ellipsometry. 217 3.6 Image recognition algorithm . 217 3.7 Atomic force microscopy measurements. 218 4 Conclusions. 218
References. 219 1 2 Chapter 8. Laser-Assisted Micromachining and Applications 225 L. Criante, R. Ramos-Garcia, and S. Bonfadini Introduction. Femtosecond Laser Irradiation: Outlineof Theory. Glass Micro-chip Fabrication . 3.1 Selective chemical etching. 3.2 Femtosecond micromachining setup. 4 Needle-free Injectors in a Microfluidic Platform: A Challenging Application for the FLICE Fabrication Technique. 4.1 Thermocavitation bubble generation. 5 Conclusions. References. 1 2 3 225 228 232 232 235 237 240 245 246
Contents xii Chapter 9. Novel Photo-sensitive Materials for Microengineering and Energy Harvesting D. V. F. P. F. 251 Sagnelli, A. Vestri, A. D’Avino, Μ. Rippa, Marchesano, F. Ratto, A. De Girolamo Del Mauro, Loffredo, F. Villani, G. Nenna, G. Ardila, Meneroud, J. Gauthier, S. Duc, Μ. Thomachot, Claeyssen, and L. Petti 1 2 Introduction. 252 Photo-responsive Polymers . 255 2.1 Mechanisms of photo-responsiveness. 256 2.2 Azobenzene in photomobile polymers. 260 2.3 Doping of photomobile polymers. 264 3 Microengineering Applications of Photomobile Materials. 267 3.1 Introduction to microengineering. 267 3.2 Photo-responsive properties in microengineering . . . 269 3.3 Applications of photomobile materials in micro valves, micro switches, and micro steering mirrors. 273 4 Toward Piezoelectric Applications with Photomobile Materials. 283 4.1 Introduction to the combination of piezoelectric materials and photomobile polymers. 283 4.2 Photo-responsive possible architectures with piezoelectrics. 285 4.3 Photomobile materials in
energy harvesting applications. 288 Acknowledgment. 292 References. 292 Index 299 |
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physical | xvii, 303 Seiten Illustrationen, Diagramme |
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spelling | Novel optical materials editors: Iam-Choon Khoo, The Pennsylvania State University , USA, Francesco Simoni, Università Politecnica della Marche, Italy, Cesare Umeton, Università della Calabria, Italy New Jersey ; London ; Singapore ; Beijing ; Shanghai ; Hong Kong ; Taipei ; Chennai ; Tokyo World Scientific [2024] xvii, 303 Seiten Illustrationen, Diagramme txt rdacontent n rdamedia nc rdacarrier Optical materials and applications volume 1 Khoo, Iam-Choon 1949- (DE-588)1055759042 edt Simoni, Francesco (DE-588)1171955537 edt Umeton, Cesare edt Erscheint auch als Online-Ausgabe (ebook for institutions) 978-981-12-8060-3 Erscheint auch als Online-Ausgabe (ebook for individuals) 978-981-12-8061-0 Optical materials and applications volume 1 (DE-604)BV049784303 1 Digitalisierung UB Bayreuth - ADAM Catalogue Enrichment application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=035043159&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Novel optical materials Optical materials and applications |
title | Novel optical materials |
title_auth | Novel optical materials |
title_exact_search | Novel optical materials |
title_full | Novel optical materials editors: Iam-Choon Khoo, The Pennsylvania State University , USA, Francesco Simoni, Università Politecnica della Marche, Italy, Cesare Umeton, Università della Calabria, Italy |
title_fullStr | Novel optical materials editors: Iam-Choon Khoo, The Pennsylvania State University , USA, Francesco Simoni, Università Politecnica della Marche, Italy, Cesare Umeton, Università della Calabria, Italy |
title_full_unstemmed | Novel optical materials editors: Iam-Choon Khoo, The Pennsylvania State University , USA, Francesco Simoni, Università Politecnica della Marche, Italy, Cesare Umeton, Università della Calabria, Italy |
title_short | Novel optical materials |
title_sort | novel optical materials |
title_sub | Francesco Simoni, Iam-Choon Khoo, Cesare Umeton |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=035043159&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
volume_link | (DE-604)BV049784303 |
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