Master the foundational principles that drive successful optical system design in modern imaging applications
Lens Design for Imaging – Volume 1: Fundamentals of Optical Systems, by Herbert Gross, delivers a comprehensive discussion of the theoretical foundations of optical systems. Gross draws on his extensive industrial and academic experience in lens design to close the gap between purely theoretical examinations of lens design and practical application. The author provides a systematic and robust methodology for lens design that guides you through the conceptual design, analysis, and optimization of complex imaging systems across diverse applications. In this first volume the basic preconditions to understand optical imaging systems are presented.
The book covers twelve domains of optical system fundamentals, from material properties and geometrical optics to advanced topics, like diffraction theory, Fourier optics, and digital image processing. Each chapter combines rigorous theory with illustrations and hands-on examples, making complex concepts accessible while maintaining the mathematical depth demanded by professional practice. Lens Design for Imaging – Volume 1 encompasses the necessary knowledge and critical review about optical materials dispersion, the geometrical optics approximation, ray tracing methodologies, component design principles, imaging system theory, physical optics effects, and modern computational approaches.
Readers will also find:
Perfect for optical engineers, lens designers, and advanced students in optics and photonics, Lens Design for Imaging – Volume 1 provides authoritative coverage of optical system fundamentals. It contains the systematic knowledge practitioners and students require to tackle complex design challenges.
"synopsis" may belong to another edition of this title.
Herbert Gross has 30 years’ experience designing optical systems at Zeiss AG and has spent 12 years teaching and conducting research at the University of Jena, Germany. His unique background spans both industrial lens design and academic research, providing him with deep insights into both the theoretical foundations and practical challenges of optical system development.
Master the foundational principles that drive successful optical system design in modern imaging applications
Lens Design for Imaging – Volume 1: Fundamentals of Optical Systems, by Herbert Gross, delivers a comprehensive discussion of the theoretical foundations of optical systems. Gross draws on his extensive industrial and academic experience in lens design to close the gap between purely theoretical examinations of lens design and practical application. The author provides a systematic and robust methodology for lens design that guides you through the conceptual design, analysis, and optimization of complex imaging systems across diverse applications. In this first volume the basic preconditions to understand optical imaging systems are presented.
The book covers twelve domains of optical system fundamentals, from material properties and geometrical optics to advanced topics, like diffraction theory, Fourier optics, and digital image processing. Each chapter combines rigorous theory with illustrations and hands-on examples, making complex concepts accessible while maintaining the mathematical depth demanded by professional practice. Lens Design for Imaging – Volume 1 encompasses the necessary knowledge and critical review about optical materials dispersion, the geometrical optics approximation, ray tracing methodologies, component design principles, imaging system theory, physical optics effects, and modern computational approaches.
Readers will also find:
Perfect for optical engineers, lens designers, and advanced students in optics and photonics, Lens Design for Imaging – Volume 1 provides authoritative coverage of optical system fundamentals. It contains the systematic knowledge practitioners and students require to tackle complex design challenges.
"About this title" may belong to another edition of this title.
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Hardcover. Condition: new. Hardcover. Master the foundational principles that drive successful optical system design in modern imaging applications Lens Design for Imaging Volume 1: Fundamentals of Optical Systems, by Herbert Gross, delivers a comprehensive discussion of the theoretical foundations of optical systems. Gross draws on his extensive industrial and academic experience in lens design to close the gap between purely theoretical examinations of lens design and practical application. The author provides a systematic and robust methodology for lens design that guides you through the conceptual design, analysis, and optimization of complex imaging systems across diverse applications. In this first volume the basic preconditions to understand optical imaging systems are presented. The book covers twelve domains of optical system fundamentals, from material properties and geometrical optics to advanced topics, like diffraction theory, Fourier optics, and digital image processing. Each chapter combines rigorous theory with illustrations and hands-on examples, making complex concepts accessible while maintaining the mathematical depth demanded by professional practice. Lens Design for Imaging Volume 1 encompasses the necessary knowledge and critical review about optical materials dispersion, the geometrical optics approximation, ray tracing methodologies, component design principles, imaging system theory, physical optics effects, and modern computational approaches. Readers will also find: Comprehensive coverage of optical materials including dispersion models, in particular for short pulse systems, absorption and thermal properties, and specialized materials for UV, IR, and consumer applicationsDetailed ray tracing methods with complete equation sets for aspherical surfaces, gradient media, and diffractive elementsPresentation of physical models for diffraction effects, point spread functions, and optical transfer functions of optical systems, with practical calculation schemes with discussion of approximations and limitationsAdvanced topics, including Gaussian beam propagation, limits of Gaussian beam models, photometric analysis, and phase space representations for system analysisAn integrated approach to digital imaging methods covering realistic image simulation, enhancement techniques, and modern imaging modalities Perfect for optical engineers, lens designers, and advanced students in optics and photonics, Lens Design for Imaging Volume 1 provides authoritative coverage of optical system fundamentals. It contains the systematic knowledge practitioners and students require to tackle complex design challenges. This item is printed on demand. Shipping may be from our UK warehouse or from our Australian or US warehouses, depending on stock availability. Seller Inventory # 9783527414567
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Hardback. Condition: New. Master the foundational principles that drive successful optical system design in modern imaging applications Lens Design for Imaging - Volume 1: Fundamentals of Optical Systems, by Herbert Gross, delivers a comprehensive discussion of the theoretical foundations of optical systems. Gross draws on his extensive industrial and academic experience in lens design to close the gap between purely theoretical examinations of lens design and practical application. The author provides a systematic and robust methodology for lens design that guides you through the conceptual design, analysis, and optimization of complex imaging systems across diverse applications. In this first volume the basic preconditions to understand optical imaging systems are presented. The book covers twelve domains of optical system fundamentals, from material properties and geometrical optics to advanced topics, like diffraction theory, Fourier optics, and digital image processing. Each chapter combines rigorous theory with illustrations and hands-on examples, making complex concepts accessible while maintaining the mathematical depth demanded by professional practice. Lens Design for Imaging - Volume 1 encompasses the necessary knowledge and critical review about optical materials dispersion, the geometrical optics approximation, ray tracing methodologies, component design principles, imaging system theory, physical optics effects, and modern computational approaches. Readers will also find: Comprehensive coverage of optical materials including dispersion models, in particular for short pulse systems, absorption and thermal properties, and specialized materials for UV, IR, and consumer applicationsDetailed ray tracing methods with complete equation sets for aspherical surfaces, gradient media, and diffractive elementsPresentation of physical models for diffraction effects, point spread functions, and optical transfer functions of optical systems, with practical calculation schemes with discussion of approximations and limitationsAdvanced topics, including Gaussian beam propagation, limits of Gaussian beam models, photometric analysis, and phase space representations for system analysisAn integrated approach to digital imaging methods covering realistic image simulation, enhancement techniques, and modern imaging modalities Perfect for optical engineers, lens designers, and advanced students in optics and photonics, Lens Design for Imaging - Volume 1 provides authoritative coverage of optical system fundamentals. It contains the systematic knowledge practitioners and students require to tackle complex design challenges. Seller Inventory # LU-9783527414567
Quantity: Over 20 available