Home > Mathematics and Science Textbooks > Physics > Optical physics > Optics and Photonics: An Introduction
21%
Optics and Photonics: An Introduction

Optics and Photonics: An Introduction

          
5
4
3
2
1

Out of Stock


Premium quality
Premium quality
Bookswagon upholds the quality by delivering untarnished books. Quality, services and satisfaction are everything for us!
Easy Return
Easy return
Not satisfied with this product! Keep it in original condition and packaging to avail easy return policy.
Certified product
Certified product
First impression is the last impression! Address the book’s certification page, ISBN, publisher’s name, copyright page and print quality.
Secure Checkout
Secure checkout
Security at its finest! Login, browse, purchase and pay, every step is safe and secured.
Money back guarantee
Money-back guarantee:
It’s all about customers! For any kind of bad experience with the product, get your actual amount back after returning the product.
On time delivery
On-time delivery
At your doorstep on time! Get this book delivered without any delay.
Notify me when this book is in stock
Add to Wishlist

About the Book

The Second Edition of this successful textbook provides a clear, well-written introduction to both the fundamental principles of optics and the key aspects of photonics to show how the subject has developed in the last few decades, leading to many modern applications. Optics and Photonics: An Introduction, Second Edition thus provides a complete undergraduate course on optics in a single integrated text, and is an essential resource for all undergraduate physics, science and engineering students taking a variety of optics based courses. Specific changes for this edition include: New material on modern optics and photonics Rearrangement of chapters to give a logical progression, comprising groups of chapters on geometric optics, wave optics and photonics Many more worked examples and problems Substantial revisions to chapters on Holography, Lasers and the Interaction of Light with Matter Solutions can be found at: www.booksupport.wiley.com

Table of Contents:
PREFACE. 1. LIGHT AS WAVES, RAYS AND PHOTONS. The nature of light. Waves and rays. Total internal reflection. The light wave. Electromagnetic waves. The electromagnetic spectrum. Stimulated emission: the laser. Photons and material particles. 2. GEOMETRIC OPTICS. The thin prism: the ray approach and the wavefront approach. The lens as an assembly of prisms. Refraction at a spherical surface. Two surfaces; the simple lens. Imaging in spherical mirrors. General properties of imaging systems. Separated thin lenses in air. Ray tracing by matrices. Locating the cardinal points: position of a nodal point, focal point, principal point, focal length, the other cardinal points. Perfect imaging. Perfect imaging of surfaces. Ray and wave aberrations. Wave aberration on-axis – spherical aberration. Off-axis aberrations. The influence of aperture stops. The correction of chromatic aberration. Achromatism in separated lens systems. Adaptive optics. 3. OPTICAL INSTRUMENTS. The human eye. The simple lens magnifier. The compound microscope. The confocal scanning microscope. Resolving power; conventional and near-field microscopes. The telescope. Advantages of the various types of telescope. Binoculars. The camera. Illumination in optical instruments. 4. PERIODIC AND NON-PERIODIC WAVES. Simple harmonic waves. Positive and negative frequencies. Standing waves. Beats between oscillators. Similarities between beats and standing wave patterns. Standing waves at a reflector. The Doppler effect. Doppler radar. Astronomical aberration. Fourier series. Modulated waves: Fourier transforms. Modulation by a non-periodic function. Convolution. Delta and grating functions. Autocorrelation and the power spectrum. Wave groups. An angular spread of plane waves. 5. ELECTROMAGNETIC WAVES. Maxwell’s equations. Transverse waves. Reflection and transmission: Fresnel’s equations. Total internal reflection: evanescent waves. Energy flow. Photon momentum and radiation pressure. Blackbody radiation. 6. FIBRE AND WAVEGUIDE OPTICS. The light pipe. Guided waves. The slab dielectric guide. Evanescent fields in fibre optics. Cylindrical fibres and waveguides. Numerical aperture. Materials for optical fibres. Dispersion in optical fibres. Dispersion compensation. Modulation and communications. Fibre optical components. Hole-array light guide; photonic crystal fibres. Optical fibre sensors. Fabrication of optical fibres. 7. POLARIZATION OF LIGHT. Polarization of transverse waves. Analysis of elliptically polarized waves. Polarizers. Liquid crystal displays. Birefringence in anisotropic media. Birefringent polarizers. Generalizing Snell’s law for anisotropic materials. Quarter- and half-wave plates. Optical activity. Formal descriptions of polarization. Induced birefringence. 8. INTERFERENCE. Interference. Young’s experiment. Newton’s rings. Interference effects with a plane-parallel plate. Thin films. Michelson’s spectral interferometer. Multiple beam interference. The Fabry–Pérot interferometer. Interference filters. 9. INTERFEROMETRY: LENGTH, ANGLE AND ROTATION. The Rayleigh interferometer. Wedge fringes and end gauges. The Twyman and Green interferometer. The standard of length. The Michelson–Morley experiment. Detecting gravitational waves by interferometry. The Sagnac ring interferometer. Optical fibres in interferometers. The ring laser gyroscope. Measuring angular width. The effect of slit width. Source size and coherence. Michelson’s stellar interferometer. Very long baseline interferometry. The intensity interferometer. 10. DIFFRACTION. Diffraction at a single slit. The general aperture. Rectangular and circular apertures: uniformly illuminated single slit: two infinitesimally narrow slits: two slits with finite width: uniformly illuminated rectangular aperture: uniformly illuminated circular aperture. Fraunhofer and Fresnel diffraction. Shadow edges – Fresnel diffraction at a straight edge. Diffraction of cylindrical wavefronts. Fresnel diffraction by slits and strip obstacles. Spherical waves and circular apertures: half-period zones. Fresnel–Kirchhoff diffraction theory. Babinet’s principle. The field at the edge of an aperture. 11. THE DIFFRACTION GRATING AND ITS APPLICATIONS. The diffraction grating. Diffraction pattern of the grating. The effect of slit width and shape. Fourier transforms in grating theory. Missing orders and blazed gratings. Making gratings. Concave gratings. Blazed, echellette, echelle and echelon gratings. Radio antenna arrays: end-fire array shooting equally in both directions: end-fire array shooting in only one direction: the broadside array: two-dimensional broadside arrays. X-ray diffraction with a ruled grating. Diffraction by a crystal lattice. The Talbot effect. 12. SPECTRA AND SPECTROMETRY. Spectral lines. Linewidth and lineshape. The prism spectrometer. The grating spectrometer. Resolution and resolving power. Resolving power: the prism spectrometer. Resolving power: grating spectrometers. The Fabry–Pe´rot spectrometer. Twin beam spectrometry; Fourier transform spectrometry. Irradiance fluctuation, or photon-counting spectrometry. Scattered laser light. 13. COHERENCE AND CORRELATION. Temporal and spatial coherence. Correlation as a measure of coherence. Temporal coherence of a wavetrain. Fluctuations in irradiance. The van Cittert–Zernike theorem. Autocorrelation and coherence. Two-dimensional angular resolution. Irradiance fluctuations: the intensity interferometer. Spatial filtering. 14. HOLOGRAPHY. Reconstructing a plane wave. Gabor’s original method. Basic holography analysis. Holographic recording: off-axis holography. Aspect effects. Types of hologram. Holography in colour. The rainbow hologram. Holography of moving objects. Holographic interferometry. Holographic optical elements. Holographic data storage. 15. LASERS. Stimulated emission. Pumping: the energy source. Absorption and emission of radiation. Laser gain. Population inversion. Threshold gain coefficient. Laser resonators. Beam irradiance and divergence. Examples of important laser systems: gas lasers, solid state lasers, liquid lasers. 16. LASER LIGHT. Laser linewidth. Spatial coherence: laser speckle. Temporal coherence and coherence length. Laser pulse duration: Q-switching, mode-locking. Laser radiance. Focusing laser light. Photon momentum: optical tweezers and trapping; optical tweezers; laser cooling. Non-linear optics. 17. SEMICONDUCTORS AND SEMICONDUCTOR LASERS. Semiconductors. Semiconductor diodes. LEDs and semiconductor lasers; heterojunction lasers. Semiconductor laser cavities. Wavelengths and tuning of semiconductor lasers. Modulation. Organic semiconductor LEDs and lasers. 18. SOURCES OF LIGHT. Classical radiation processes: radiation from an accelerated charge; the Hertzian dipole. Free–free radiation. Cyclotron and synchrotron radiation. Free electron lasers. Cerenkov radiation. The formation of spectral lines: the Bohr model; nuclear mass; quantum mechanics; angular momentum and electron spin. Light from the Sun and Stars. Thermal sources. Fluorescent lights. Luminescence sources. Electroluminescence. 19. INTERACTION OF LIGHT WITH MATTER. The classical resonator. Rayleigh scattering. Polarization and refractive index in dielectrics. Free electrons. Faraday rotation in a plasma. Resonant atoms in gases. The refractive index of dense gases, liquids and solids. Anisotropic refraction. Brillouin scattering. Raman scattering. Thomson and Compton scattering by electrons. A summary of scattering processes. 20. THE DETECTION OF LIGHT. Photoemissive detectors. Semiconductor detectors. Semiconductor junction photodiodes. Imaging detectors. Noise in photodetectors. Image intensifiers. Photography. Thermal detectors. 21. OPTICS AND PHOTONICS IN NATURE. Light and colour in the open air. The development of eyes. Corneal and lens focusing. Compound eyes. Reflection optics. Fluorescence and photonics in a butterfly. Biological light detectors. Photosynthesis. Appendix 1: Answers to Selected Problems. Appendix 2: Radiometry and Photometry. Appendix 3: Refractive Indices of Common Materials. Appendix 4: Spectral Lineshapes and Linewidths. Appendix 5: Further Reading. INDEX.


Best Sellers


Product Details
  • ISBN-13: 9780470017845
  • Publisher: John Wiley & Sons Inc
  • Publisher Imprint: John Wiley & Sons Inc
  • Edition: 2 Rev ed
  • Language: English
  • Returnable: N
  • Spine Width: 29 mm
  • Weight: 992 gr
  • ISBN-10: 0470017848
  • Publisher Date: 20 Apr 2007
  • Binding: Paperback
  • Height: 248 mm
  • No of Pages: 528
  • Series Title: English
  • Sub Title: An Introduction
  • Width: 192 mm


Similar Products

How would you rate your experience shopping for books on Bookswagon?

Add Photo
Add Photo

Customer Reviews

REVIEWS           
Click Here To Be The First to Review this Product
Optics and Photonics: An Introduction
John Wiley & Sons Inc -
Optics and Photonics: An Introduction
Writing guidlines
We want to publish your review, so please:
  • keep your review on the product. Review's that defame author's character will be rejected.
  • Keep your review focused on the product.
  • Avoid writing about customer service. contact us instead if you have issue requiring immediate attention.
  • Refrain from mentioning competitors or the specific price you paid for the product.
  • Do not include any personally identifiable information, such as full names.

Optics and Photonics: An Introduction

Required fields are marked with *

Review Title*
Review
    Add Photo Add up to 6 photos
    Would you recommend this product to a friend?
    Tag this Book
    Read more
    Does your review contain spoilers?
    What type of reader best describes you?
    I agree to the terms & conditions
    You may receive emails regarding this submission. Any emails will include the ability to opt-out of future communications.

    CUSTOMER RATINGS AND REVIEWS AND QUESTIONS AND ANSWERS TERMS OF USE

    These Terms of Use govern your conduct associated with the Customer Ratings and Reviews and/or Questions and Answers service offered by Bookswagon (the "CRR Service").


    By submitting any content to Bookswagon, you guarantee that:
    • You are the sole author and owner of the intellectual property rights in the content;
    • All "moral rights" that you may have in such content have been voluntarily waived by you;
    • All content that you post is accurate;
    • You are at least 13 years old;
    • Use of the content you supply does not violate these Terms of Use and will not cause injury to any person or entity.
    You further agree that you may not submit any content:
    • That is known by you to be false, inaccurate or misleading;
    • That infringes any third party's copyright, patent, trademark, trade secret or other proprietary rights or rights of publicity or privacy;
    • That violates any law, statute, ordinance or regulation (including, but not limited to, those governing, consumer protection, unfair competition, anti-discrimination or false advertising);
    • That is, or may reasonably be considered to be, defamatory, libelous, hateful, racially or religiously biased or offensive, unlawfully threatening or unlawfully harassing to any individual, partnership or corporation;
    • For which you were compensated or granted any consideration by any unapproved third party;
    • That includes any information that references other websites, addresses, email addresses, contact information or phone numbers;
    • That contains any computer viruses, worms or other potentially damaging computer programs or files.
    You agree to indemnify and hold Bookswagon (and its officers, directors, agents, subsidiaries, joint ventures, employees and third-party service providers, including but not limited to Bazaarvoice, Inc.), harmless from all claims, demands, and damages (actual and consequential) of every kind and nature, known and unknown including reasonable attorneys' fees, arising out of a breach of your representations and warranties set forth above, or your violation of any law or the rights of a third party.


    For any content that you submit, you grant Bookswagon a perpetual, irrevocable, royalty-free, transferable right and license to use, copy, modify, delete in its entirety, adapt, publish, translate, create derivative works from and/or sell, transfer, and/or distribute such content and/or incorporate such content into any form, medium or technology throughout the world without compensation to you. Additionally,  Bookswagon may transfer or share any personal information that you submit with its third-party service providers, including but not limited to Bazaarvoice, Inc. in accordance with  Privacy Policy


    All content that you submit may be used at Bookswagon's sole discretion. Bookswagon reserves the right to change, condense, withhold publication, remove or delete any content on Bookswagon's website that Bookswagon deems, in its sole discretion, to violate the content guidelines or any other provision of these Terms of Use.  Bookswagon does not guarantee that you will have any recourse through Bookswagon to edit or delete any content you have submitted. Ratings and written comments are generally posted within two to four business days. However, Bookswagon reserves the right to remove or to refuse to post any submission to the extent authorized by law. You acknowledge that you, not Bookswagon, are responsible for the contents of your submission. None of the content that you submit shall be subject to any obligation of confidence on the part of Bookswagon, its agents, subsidiaries, affiliates, partners or third party service providers (including but not limited to Bazaarvoice, Inc.)and their respective directors, officers and employees.

    Accept

    New Arrivals


    Inspired by your browsing history


    Your review has been submitted!

    You've already reviewed this product!
    ASK VIDYA