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Wave nature of light Light is an electromagnetic wave. EM waves are those waves in which there are sinusoidal variation of electric and magnetic fields.

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Presentation on theme: "Wave nature of light Light is an electromagnetic wave. EM waves are those waves in which there are sinusoidal variation of electric and magnetic fields."— Presentation transcript:

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2 Wave nature of light Light is an electromagnetic wave. EM waves are those waves in which there are sinusoidal variation of electric and magnetic fields at right angles to each other as well as to the direction of propagation of wave.

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4 WAVE OPTICS WAVEFRONT The locus of all the points where the waves from a given source reach at given instant of time.

5 Spherical wavefront

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7 Cylindrical wavefront

8 1. Plane wavefront

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11 Diffraction and Interference Two phenomenon explaining wave nature of light. Diffraction and interference are similar phenomena. Interference is the effect of superposition of 2 coherent waves. Diffraction is the superposition of many coherent waves

12 Huygens’ principle Every point on the given wave front acts a fresh source of new disturbance called secondary wavelets which travel in all directions. The new wavefront at any instant will be the envelope of the secondary wavelets at that instant

13 Huygen’s Picture of a Plane wave

14 Huygen’s Explanation of Reflection

15 Huygen’s Explanation of Refraction

16 Young’s double slit experiment: classic wave effect

17 Young’s double slit experiment Interference of light is the phenomenon of redistribution of light energy in a medium on account of superposition of light waves from two coherent sources

18 Formation of crests n troughs

19 Double slit experiment with particles (e.g. electrons) Interference pattern with one slit blocked

20 Double slit experiment with particles (e.g. electrons) Interference pattern observed on the screen When both the slits are open

21 Diffraction When light waves hit an obstacle it bends around the edges of the obstacle. This property of bending of light is called diffraction. For example, if light of red wavelength from a laser source hits a small hole, it bends around the edges of the hole and forms a pattern called an Airy disc pattern.

22 Single slit diffraction Diffraction occurs on account of mutual interference of secondary wavelets starting from the portions of wave front which are allowed to pass from the aperture.

23 The pattern spreads out due to Diffraction. Wave picture Light spreads out when passed through small aperture.

24 Position of minima: a sin θ n = nλ Position of maxima a sin θ n= (2n+1)λ/2

25 If unpolarized light is incident on 1 polarizer, the intensity of the light passing through is I= ½ I 0. Polarization

26 Light scattered at 90 degrees is 100% polarized. Polarization & Scattering

27 A polarizer will transmit linear polarized waves in the same direction independent of the incoming wave.


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