Mathematical Optics

Mathematical Optics
Author :
Publisher : CRC Press
Total Pages : 632
Release :
ISBN-10 : 9781439869604
ISBN-13 : 143986960X
Rating : 4/5 (04 Downloads)

Synopsis Mathematical Optics by : Vasudevan Lakshminarayanan

Going beyond standard introductory texts, Mathematical Optics: Classical, Quantum, and Computational Methods brings together many new mathematical techniques from optical science and engineering research. Profusely illustrated, the book makes the material accessible to students and newcomers to the field. Divided into six parts, the text presents state-of-the-art mathematical methods and applications in classical optics, quantum optics, and image processing. Part I describes the use of phase space concepts to characterize optical beams and the application of dynamic programming in optical waveguides. Part II explores solutions to paraxial, linear, and nonlinear wave equations. Part III discusses cutting-edge areas in transformation optics (such as invisibility cloaks) and computational plasmonics. Part IV uses Lorentz groups, dihedral group symmetry, Lie algebras, and Liouville space to analyze problems in polarization, ray optics, visual optics, and quantum optics. Part V examines the role of coherence functions in modern laser physics and explains how to apply quantum memory channel models in quantum computers. Part VI introduces super-resolution imaging and differential geometric methods in image processing. As numerical/symbolic computation is an important tool for solving numerous real-life problems in optical science, many chapters include Mathematica® code in their appendices. The software codes and notebooks as well as color versions of the book’s figures are available at www.crcpress.com.

Mathematical Methods for Optical Physics and Engineering

Mathematical Methods for Optical Physics and Engineering
Author :
Publisher : Cambridge University Press
Total Pages : 819
Release :
ISBN-10 : 9781139492690
ISBN-13 : 1139492691
Rating : 4/5 (90 Downloads)

Synopsis Mathematical Methods for Optical Physics and Engineering by : Gregory J. Gbur

The first textbook on mathematical methods focusing on techniques for optical science and engineering, this text is ideal for upper division undergraduate and graduate students in optical physics. Containing detailed sections on the basic theory, the textbook places strong emphasis on connecting the abstract mathematical concepts to the optical systems to which they are applied. It covers many topics which usually only appear in more specialized books, such as Zernike polynomials, wavelet and fractional Fourier transforms, vector spherical harmonics, the z-transform, and the angular spectrum representation. Most chapters end by showing how the techniques covered can be used to solve an optical problem. Essay problems based on research publications and numerous exercises help to further strengthen the connection between the theory and its applications.

Mathematical Optics

Mathematical Optics
Author :
Publisher : CRC Press
Total Pages : 630
Release :
ISBN-10 : 9781439869611
ISBN-13 : 1439869618
Rating : 4/5 (11 Downloads)

Synopsis Mathematical Optics by : Vasudevan Lakshminarayanan

Going beyond standard introductory texts, Mathematical Optics: Classical, Quantum, and Computational Methods brings together many new mathematical techniques from optical science and engineering research. Profusely illustrated, the book makes the material accessible to students and newcomers to the field. Divided into six parts, the text presents state-of-the-art mathematical methods and applications in classical optics, quantum optics, and image processing. Part I describes the use of phase space concepts to characterize optical beams and the application of dynamic programming in optical waveguides. Part II explores solutions to paraxial, linear, and nonlinear wave equations. Part III discusses cutting-edge areas in transformation optics (such as invisibility cloaks) and computational plasmonics. Part IV uses Lorentz groups, dihedral group symmetry, Lie algebras, and Liouville space to analyze problems in polarization, ray optics, visual optics, and quantum optics. Part V examines the role of coherence functions in modern laser physics and explains how to apply quantum memory channel models in quantum computers. Part VI introduces super-resolution imaging and differential geometric methods in image processing. As numerical/symbolic computation is an important tool for solving numerous real-life problems in optical science, many chapters include Mathematica® code in their appendices. The software codes and notebooks as well as color versions of the book’s figures are available at www.crcpress.com.

Mathematical Theory of Optics

Mathematical Theory of Optics
Author :
Publisher : Univ of California Press
Total Pages : 482
Release :
ISBN-10 :
ISBN-13 :
Rating : 4/5 ( Downloads)

Synopsis Mathematical Theory of Optics by : Rudolf Karl Luneburg

Mathematical Methods of Quantum Optics

Mathematical Methods of Quantum Optics
Author :
Publisher : Springer
Total Pages : 291
Release :
ISBN-10 : 9783540449539
ISBN-13 : 3540449531
Rating : 4/5 (39 Downloads)

Synopsis Mathematical Methods of Quantum Optics by : Ravinder R. Puri

Starting from first principles, this reference treats the theoretical aspects of quantum optics. It develops a unified approach for determining the dynamics of a two-level and three-level atom in combinations of quantized field under certain conditions.

Geometric Optics on Phase Space

Geometric Optics on Phase Space
Author :
Publisher : Springer Science & Business Media
Total Pages : 400
Release :
ISBN-10 : 3540220399
ISBN-13 : 9783540220398
Rating : 4/5 (99 Downloads)

Synopsis Geometric Optics on Phase Space by : Kurt Bernardo Wolf

Symplectic geometry, well known as the basic structure of Hamiltonian mechanics, is also the foundation of optics. In fact, optical systems (geometric or wave) have an even richer symmetry structure than mechanical ones (classical or quantum). The symmetries underlying the geometric model of light are based on the symplectic group. Geometric Optics on Phase Space develops both geometric optics and group theory from first principles in their Hamiltonian formulation on phase space. This treatise provides the mathematical background and also collects a host of useful methods of practical importance, particularly the fractional Fourier transform currently used for image processing. The reader will appreciate the beautiful similarities between Hamilton's mechanics and this approach to optics. The appendices link the geometry thus introduced to wave optics through Lie methods. The book addresses researchers and graduate students.

The Mathematics of Geometrical and Physical Optics

The Mathematics of Geometrical and Physical Optics
Author :
Publisher : John Wiley & Sons
Total Pages : 240
Release :
ISBN-10 : 9783527608294
ISBN-13 : 352760829X
Rating : 4/5 (94 Downloads)

Synopsis The Mathematics of Geometrical and Physical Optics by : Orestes N. Stavroudis

In this sequel to his book, "The Optics of Rays, Wavefronts, and Caustics," Stavroudis not only covers his own research results, but also includes more recent developments. The book is divided into three parts, starting with basic mathematical concepts that are further applied in the book. Surface geometry is treated with classical mathematics, while the second part covers the k-function, discussing and solving the eikonal equation as well as Maxwell equations in this context. A final part on applications consists of conclusions drawn or developed in the first two parts of the book, discussing such topics as the Cartesian oval, the modern Schiefspiegler, Huygen's principle, and Maxwell's model of Gauss' perfect lens.

Mathematical Devices for Optical Sciences

Mathematical Devices for Optical Sciences
Author :
Publisher :
Total Pages : 0
Release :
ISBN-10 : 0750316136
ISBN-13 : 9780750316132
Rating : 4/5 (36 Downloads)

Synopsis Mathematical Devices for Optical Sciences by : Sibel Başkal

"The Lorentz group which is the underlying scientific language for modern optics has been most notably used for understanding Einstein's special relativity. By using a simplified approach of two-by-two matrices and Wigner functions, this book provides a basic and novel approach to classical and quantum optics, making these often-difficult subjects more transparent to the reader. Written by three experts in the field, Professors Sibel Baðskal, Young S. Kim, and Marilyn E Noz, this book will give the reader a comprehensive overview of how fundamental issues in quantum mechanics can be approached using various optical instruments, Wigner functions, and quantum entanglement." -- Prové de l'editor.

Mathematical Modeling in Optical Science

Mathematical Modeling in Optical Science
Author :
Publisher : SIAM
Total Pages : 344
Release :
ISBN-10 : 9780898714753
ISBN-13 : 0898714753
Rating : 4/5 (53 Downloads)

Synopsis Mathematical Modeling in Optical Science by : Gang Bao

This volume addresses recent developments in mathematical modeling in three areas of optical science: diffractive optics, photonic band gap structures, and waveguides. Particular emphasis is on the formulation of mathematical models and the design and analysis of new computational approaches. The book contains cutting-edge discourses on emerging technology in optics that provides significant challenges and opportunities for applied mathematicians, researchers, and engineers. Each of the three topics is presented through a series of survey papers to provide a broad overview focusing on the mathematical models. Chapters present model problems, physical principles, mathematical and computational approaches, and engineering applications corresponding to each of the three areas. Although some of the subject matter is classical, the topics presented are new and represent the latest developments in their respective fields.

Geometrical Optics

Geometrical Optics
Author :
Publisher : CUP Archive
Total Pages : 132
Release :
ISBN-10 :
ISBN-13 :
Rating : 4/5 ( Downloads)

Synopsis Geometrical Optics by : J. L. Synge

It is by no means easy for the applied mathematician to decide how much importance he should attach to the more abstract and aesthetic side of his work ... To all appearances, Sir William Rowan Hamilton (1850-1865) attached little importance to the practical applications of his method, and it was only with the publication of his Mathematical Papers that it was possible to form a more correct and balanced judgement of Hamilton as an applied mathematician.