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12701 Optical Device Diffraction - M. ADVANCED PHYSICST, SPE. PHOTONICS


Center
Student Information Service-Master
Departament
Optics and Optometry and Vision Sciences
Lecturers in charge
Sin datos cargados
Met. Docent
METHODOLOGY.
Assessment: a final written exam comprising theory questions and problems. To pass this subject the student should achieve a qualification of or over 5 out of 10.
Met. Avaluació
- -
Bibliografia
 J.W. Goodman, Introduction to Fourier Optics (McGraw-Hill, 1996).
 A.E. Siegman, Lasers (University Science Books, 1986).
 J.D. Gaskill, Linear Systems, Fourier Transforms, and Optics (Wiley, 1978).
 W.T. Cathey, Optical Information Processing and Holography (Wiley, 1974).
Continguts
CONTENTS
The aim of this subject is to familiarize the student with the phenomenon of light diffraction when light is spread through an optic system. We will study the most common optic systems (lenses, mirrors and imaging systems in general, Fourier transformers, optic resonators,...) which show the same linear character as diffraction in the open space.

THEORY PROGRAMME:
Lesson 1. Action of lenses on the propagation of light.
Lesson 2. Gaussian beams and optic resonators.
Lesson 3. Fourier transformers.
Lesson 4. Imaging with coherent illumination.
Lesson 5. Imaging with incoherent illumination.
Lesson 6. Effect of aberrations on the response of an optic system.
Lesson 7. APODIZACION.
Lesson 8. Imaging in three-dimensional objects