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/ K" N9 A" i2 j1 m9 e% ]Display Technologies 3 X% X9 L3 E% a+ N. [% u4 |- s/ G
Inspired by Nature/ x) h/ X: T+ I
Lessons from mother nature
& a( M( l# Z/ v( c+ p* d" Z仿生科技
- a- \ l" o! ~7 Z! ~' b9 BBackground picture: QUALCOMMMEMS tech
6 s6 U) N3 R, X. D. gAgenda, M7 N) A: P* g
Introduction
. b$ l8 _* b7 s4 G/ pDisplay and components 3 M4 o( a T: ^& i* O' `# m7 Z
inspired from nature
3 S+ p6 i& l# NSummary3 q$ w+ A6 O" x1 [; @, P( e
We all remember these scenes+ l) \7 s% N# t
Why are things colored
/ [8 w( ?# b3 U. o5 J$ RCourtesy of Dr. R.O. Prum
; t, T! Y( {8 |Kurt Nassua, in his book The Physics and
3 W& Q! K* f) v: c* c( A; G/ RChemistry of Color, identifies 15 + d) Z$ ]7 H$ o3 b Y, k
different causes of color( L+ Q0 L5 `: V9 H9 l: j
1. Incandescence
. J$ U% p: b% s- G' U* W0 B r2. Gas Excitations0 F8 M- ?2 J/ q# L- B' m
3. Color from Vibrations and Rotations
( g8 ^; g8 R' z4. Transition Metals in a LigandField! ]- E5 t! D9 d+ {& x
5. Organic Molecules
4 S0 Z4 b y$ o" I; j, y, ?6. Charge Transfer+ l$ ^: K: y; f$ x- y! T- o
7. Metals( M- Y( f4 j5 W2 m
8. Semiconductors
0 k G/ K k/ a# _) c9. Doped Semi-conductors) X9 H9 [" Q, r! B" e6 f
10. Color Centers2 y" T; G! q: m. k2 _
11. Dispersive Refraction
7 X* @! `9 R# d1 O12. Polarization
. K. h( c; m! i+ i3 V; ^13. Scattering
$ l8 w$ j3 W0 o |, k14. Interference0 n; A' _* W2 M' R/ q
15. Diffraction |
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