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Polarization Electromagnetic Waves. Electromagnetic Wave.

Date post: 19-Jan-2018
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EM wave is … Light is an electromagnetic wave.Light is an electromagnetic wave. It consists of vibrations of an electric field and a magnetic field.It consists of vibrations of an electric field and a magnetic field. The electric field and magnetic field are perpendicular to each other and in phase.The electric field and magnetic field are perpendicular to each other and in phase. An EM wave is a transverse wave.An EM wave is a transverse wave. The speed of all EM waves is 3.00 x 10 8 ms -1.The speed of all EM waves is 3.00 x 10 8 ms -1.
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Polarization Electromagnetic Waves
Transcript
Page 1: Polarization Electromagnetic Waves. Electromagnetic Wave.

PolarizationElectromagnetic Waves

Page 2: Polarization Electromagnetic Waves. Electromagnetic Wave.

Electromagnetic Wave

Page 3: Polarization Electromagnetic Waves. Electromagnetic Wave.

EM wave is …• Light is an electromagnetic wave.• It consists of vibrations of an electric

field and a magnetic field.• The electric field and magnetic field

are perpendicular to each other and in phase.

• An EM wave is a transverse wave.• The speed of all EM waves is 3.00 x

108 ms-1.

Page 4: Polarization Electromagnetic Waves. Electromagnetic Wave.

Electric Field Vector

Page 5: Polarization Electromagnetic Waves. Electromagnetic Wave.

Polarized Light

Polarized LightVibrations lie on one single plane only.

Unpolarized LightSuperposition of many beams, in the same direction of propagation, but each with random polarization.

Page 6: Polarization Electromagnetic Waves. Electromagnetic Wave.

Representation . . .

Unpolarized

Polarized

EE

Page 7: Polarization Electromagnetic Waves. Electromagnetic Wave.

Polarization of Light

Page 8: Polarization Electromagnetic Waves. Electromagnetic Wave.

Polarizing Material

A Polarizing material will only allow the passage of that component of the electric field parallel to the polarization direction of the material

I = I0 cos2q

Page 9: Polarization Electromagnetic Waves. Electromagnetic Wave.

Crossed Polarizers

• The first polarizer reduces the intensity by half.• The second polarizer reduces the intensity by

another factor of cos2q.• The second polarizer projects the electric field

onto a new axis, rotated by q from the axis of the first polarizer

Page 10: Polarization Electromagnetic Waves. Electromagnetic Wave.

Crossed Perpendicularly

Page 11: Polarization Electromagnetic Waves. Electromagnetic Wave.

Crossed at different angles . . .

Page 12: Polarization Electromagnetic Waves. Electromagnetic Wave.

Reflection

Page 14: Polarization Electromagnetic Waves. Electromagnetic Wave.

Sunglasses – Glare Reduction

• Polarized lenses have the added benefit of filtering out reflected light, or glare, off surfaces such as water or pavement

• Ideal for boating, fishing, driving or any other activity associated with intense glare

• Reduces eyestrain and fatigue, while increasing contrast and visual acuity

Page 15: Polarization Electromagnetic Waves. Electromagnetic Wave.

How Do Polarized Lenses Work?

• Light reflected from surfaces like a flat road or smooth water is generally horizontally polarized. This horizontally polarized light is blocked by the vertically oriented polarizers in the lenses.

• The result: a reduction in annoying and sometimes dangerous glare.

Page 16: Polarization Electromagnetic Waves. Electromagnetic Wave.

Action of Polaroid Sunglass

Unwanted glares are usually horizontally polarized light

Vertically Polarized Light from ObjectsLight reflected

from surfaces like a flat road or smooth water is generally horizontally polarized. This horizontally polarized light is blocked by the vertically oriented polarizers in the lenses.

Page 17: Polarization Electromagnetic Waves. Electromagnetic Wave.

Glare and Polarization

http://regentsprep.org/Regents/physics/phys04/cpolarize/glare.htm

Page 18: Polarization Electromagnetic Waves. Electromagnetic Wave.

Glare and Polarization

The polaroid absorbs most of the polarized light reflected from the water’surface, allowing the dimmer light from the bottom of the river, and any fish swimming there, to be seen more readily.

Page 19: Polarization Electromagnetic Waves. Electromagnetic Wave.

Glare and Polarization

www.johnsonwindowfilms.com/cutglare.htm

Page 20: Polarization Electromagnetic Waves. Electromagnetic Wave.

Glare and Reduction

Page 21: Polarization Electromagnetic Waves. Electromagnetic Wave.

Application• Used in LCD display• Electrical voltage on a

liquid crystal diode turns on and off polarizing filter effect.

Page 22: Polarization Electromagnetic Waves. Electromagnetic Wave.

Seven-Segment LCD


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