Interference and Diffraction.ppt
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1、Interference and Diffraction,Huygens Principle,Any wave (including electromagnetic waves) is able to propagate because the wave here affects nearby points there In a sense, the wave is the source for more of the wave A wave here creates waves in all the forward directions For a plane wave, the gener
2、ated waves add up to make more plane waves,Mathematically, this works, but for plane waves, no one does it this way,Diffraction Through a Tiny Hole,The waves come out in all directions It is only because the whole wave makes new waves that the waves add up to only go forwards What if we let the wave
3、 pass through a tiny hole? Smaller than a wavelength,Only one point acts as source Waves spread out in all directions,Whats interesting is that oscillations depend on distance from slit,Interference Through Two Slits,Now imagine we have two slits, equally sized Each slit creates its own waves,In som
4、e directions, crests add with crests to make bigger “brighter” crests In others, crests combine with troughs to make minimum areas In the end, what you get is a pattern of alternating light and dark bands,Were about to need an obscure math identity:,Interference Through Two Slits (2),What do the EM
5、waves look like far away? Let the separation of the slits be d Lets find total E-field at point P,P,d sin,Interference Through Two Slits (3),Where is it bright? Where is it dark?,Interference Through Four Slits,What if we have more than two slits? Four slits, each spaced distance d apart Treat it as
6、 two double slits,P,r1,2,r3,4,For four slits, every third band is bright,More Slits and Diffraction Gratings,This process can be continued for more slits For N slits, every N 1th band is bright For large N, bands become very narrow,N = 8 N = 16 N = 32,A device called a diffraction grating is just tr
7、ansparent with closely spaced regular lines on it You already used it in lab,Diffraction gratings are another way to divide light into different colors More accurate way of measuring wavelength than a prism Commonly used by scientists,Resolution of Diffraction Gratings,Note that the angle depends on
8、 the wavelength With a finite number of slits, nearby wavelengths may overlap,The width of the peaks is aboutThe difference between peaks isWe can distinguish two peaks if:,N = 8, 1.1,This quantity (mN) is called the resolving power Even if N is very large, effectively N is how many slits the light
9、beam actually falls on,Diffraction Through a Single Slit,What if our slit is NOT small compared to a wavelength? Treat it as a large number of closely spaced sources, by Huygens principle,P,Let the slit size be a, and rave the distance to the center Let x be the distance of some point from the cente
10、r The distance r will be slightly different from here to P,Diffraction Through a Single Slit (2),Very similar to equation for multi-slit diffraction, but . . . a is the size of the slit This equation is for dark, not light Note m= 0 is missing Central peak twice as wide,Screens and Small Angles,Usua
11、lly your slit size/separation is large compared to the wavelength Multi-slit: Diffraction:When you project them onto a screen, you need to calculate locations of these bright/dark lines For small angles, sin and tan are the same,Diffraction and Interference Together,d,a,a,Now go through two finite s
12、ized slits Result is simply sum of each slit Resulting amplitude looks like:,a = d/5,Resulting pattern has two kinds of variations: Fast fluctuations from separation d Slow fluctuations from slit size a,The Diffraction Limit,When light goes through a “small” slit, its direction gets changed Cant det
13、ermine direction better than this,If we put light through rectangular (square) hole, we get diffraction in both dimensions A circular hole of diameter D is a trifle smaller, which causes a bit more spread in the outgoing wave For homework, use this formula; for tests, the approximate formula is good
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