Optical Fiber Communication "Rule of Light "

13

Transcript of Optical Fiber Communication "Rule of Light "

Page 1: Optical Fiber Communication "Rule of Light "
Page 2: Optical Fiber Communication "Rule of Light "

Ray theory

The optical energy in the form of wave, follows narrow paths, called rays.

Rays are used to describe optical effects geometrically, ray theory is called geometrical optics.

Rays really on geometrical paths They carried the beam energy

Page 3: Optical Fiber Communication "Rule of Light "

Rays obey a few simple rules:

Rays travel at certain speeds and reflected by objects .

Rays obey simple rules:

Page 4: Optical Fiber Communication "Rule of Light "

Rules 01.

In a vacuum, rays travel at a velocity of c = 3 x 10*8m/s.

In any other medium it travel at slower speed, given by

v = c /n n is the index of refraction(refractive

index) of medium.

Page 5: Optical Fiber Communication "Rule of Light "
Page 6: Optical Fiber Communication "Rule of Light "
Page 7: Optical Fiber Communication "Rule of Light "
Page 8: Optical Fiber Communication "Rule of Light "

Rules 02.

Rays travel in straight paths unless deflected by some change in the medium.

Page 9: Optical Fiber Communication "Rule of Light "

Rules 03. At a plane boundary between two media,

a ray is reflected at an angle equal to the angle of incidence

The angles are measured with respect to the boundary normal i.e. the direction perpendicular to the surface.

Page 10: Optical Fiber Communication "Rule of Light "

Rules 04. Snell 's law If ray crosses the boundary, the

transmitted ray direction is given by Snell 's law

sin θt =n1 ; sin θi =n2 where θt is the angle of transmission, θi

is angle of incident n1, n2 and are the refractive indices of the incident

Page 11: Optical Fiber Communication "Rule of Light "

Snell 's law

Page 12: Optical Fiber Communication "Rule of Light "

5

Page 13: Optical Fiber Communication "Rule of Light "