Top Banner
Light, the Eye and Optics
26

Light, the Eye and Optics. Light aka Visible Electromagnetic Radiation.

Jan 03, 2016

Download

Documents

Ernest Young
Welcome message from author
This document is posted to help you gain knowledge. Please leave a comment to let me know what you think about it! Share it to your friends and learn new things together.
Transcript
Page 1: Light, the Eye and Optics. Light aka Visible Electromagnetic Radiation.

Light, the Eyeand Optics

Page 2: Light, the Eye and Optics. Light aka Visible Electromagnetic Radiation.

Lightaka Visible Electromagnetic Radiation

Page 3: Light, the Eye and Optics. Light aka Visible Electromagnetic Radiation.

Wavelength ≈ 1/Frequency

Page 4: Light, the Eye and Optics. Light aka Visible Electromagnetic Radiation.

Visible Spectrum:400-700 nm

Page 5: Light, the Eye and Optics. Light aka Visible Electromagnetic Radiation.
Page 6: Light, the Eye and Optics. Light aka Visible Electromagnetic Radiation.

6

Visibility as a Function of WaveLength (Vl)(Light Adapted Eye)

Page 7: Light, the Eye and Optics. Light aka Visible Electromagnetic Radiation.

Why 400-700 nm?

Page 8: Light, the Eye and Optics. Light aka Visible Electromagnetic Radiation.

Visible Spectrum (400-700 nm)versus Nature of Sunlight

Page 9: Light, the Eye and Optics. Light aka Visible Electromagnetic Radiation.

Polarization(Orientation of Electric Field)

Page 10: Light, the Eye and Optics. Light aka Visible Electromagnetic Radiation.

Light FactsSpeed of Light 186,000 miles/s; 300 Million m/s (psychologically instantaneous)

Energy in light is wavelength dependent E = h * frequency = h * 1/wavelength (shorter wavelengths have greater energy)

Psychological light measurement units:

LUMEN Total light “flux” emitted by a source (WATTS x Visibility Function)

LUX Illumination (Light distribution falling on a surface) (lumens/m2)

LUMINANCE Light from reflective surface as captured by the eye (lumens/sr/m2) candela/m2 (nit)

Page 11: Light, the Eye and Optics. Light aka Visible Electromagnetic Radiation.

Refraction of LightBend toward normal entering dense medium.

Bend away from normal leaving dense medium.

Snell’s Law: sin θ1/sin θ2 = n2/n1 …… n1 sin θ1 = n2 sin θ2 http://en.wikipedia.org/wiki/Snell's_law

Page 12: Light, the Eye and Optics. Light aka Visible Electromagnetic Radiation.

The Human Eye

Page 13: Light, the Eye and Optics. Light aka Visible Electromagnetic Radiation.

Six Extraocular Muscles

Page 14: Light, the Eye and Optics. Light aka Visible Electromagnetic Radiation.

The Human Eye

Page 15: Light, the Eye and Optics. Light aka Visible Electromagnetic Radiation.
Page 16: Light, the Eye and Optics. Light aka Visible Electromagnetic Radiation.

Physiological Optics

Page 17: Light, the Eye and Optics. Light aka Visible Electromagnetic Radiation.

Power of LensIncreases with Curvature

Page 18: Light, the Eye and Optics. Light aka Visible Electromagnetic Radiation.

Refraction of LightBend toward normal entering dense medium.

Bend away from normal leaving dense medium.

Snell’s Law: sin θ1/sin θ2 = n2/n1 …… n1 sin θ1 = n2 sin θ2 http://en.wikipedia.org/wiki/Snell's_law

Page 19: Light, the Eye and Optics. Light aka Visible Electromagnetic Radiation.

Accommodation of the Lens(Variable Focal Length)

Page 20: Light, the Eye and Optics. Light aka Visible Electromagnetic Radiation.

Refractive States of the Eye

EmmetroiaHyperopia

Myopia(Astigmatism)

Page 21: Light, the Eye and Optics. Light aka Visible Electromagnetic Radiation.

Hyperopia

Page 22: Light, the Eye and Optics. Light aka Visible Electromagnetic Radiation.

Myopia

Page 23: Light, the Eye and Optics. Light aka Visible Electromagnetic Radiation.

Corneal Astigmatism

Page 24: Light, the Eye and Optics. Light aka Visible Electromagnetic Radiation.

Simulated Astigmatism

Page 25: Light, the Eye and Optics. Light aka Visible Electromagnetic Radiation.

“Correcting” Astigmatismwith Spherical Lenses

Page 26: Light, the Eye and Optics. Light aka Visible Electromagnetic Radiation.

End