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9 m& V6 O- w4 j, S9 P. M0 X1 O6 ^Display Technologies
7 L0 V1 d5 k. z% Q4 YInspired by Nature
' |- v2 D' B0 R: x5 CLessons from mother nature# _) z6 Y, p" n* H0 u4 G
仿生科技
^% y8 ~9 X* j: h% j; lBackground picture: QUALCOMMMEMS tech( O+ u8 `8 e. f2 p1 N9 R/ n
Agenda7 |. H$ M- Y$ a# ^2 J
Introduction
6 T) v, B( b1 j5 ODisplay and components $ w% E& @# } J% j/ ?
inspired from nature9 p; J) K; A% q1 {4 ]3 g
Summary; e' X3 y( P; N7 c0 D
We all remember these scenes
5 X' V& @) d$ n' f+ R7 HWhy are things colored 0 H0 b7 E2 _- g0 U% ]
Courtesy of Dr. R.O. Prum
( Y) ]8 y& Q0 f! o5 E+ _* JKurt Nassua, in his book The Physics and 9 J' n" v1 _7 r" @; @- q0 I
Chemistry of Color, identifies 15 / L6 S0 _1 X1 l% v# E
different causes of color
- L# T8 Y5 x. E B1. Incandescence$ d8 W5 F% k; T
2. Gas Excitations, T# e7 o0 k- I, }0 S0 S
3. Color from Vibrations and Rotations/ q7 C" B! B, m
4. Transition Metals in a LigandField
" U9 l/ @$ U/ q2 c: U& q( V7 j5. Organic Molecules, P' b- X9 G# C6 M% e; Q% V
6. Charge Transfer* @# a( ?* E9 f2 g3 q
7. Metals
) A( [$ u" p" `; Y8. Semiconductors
: Z* c, f$ ?- s" R9. Doped Semi-conductors
9 n. |9 u* A3 [, j; o10. Color Centers# r2 v6 u4 u) s$ E) ^' t
11. Dispersive Refraction: ^' A# \% b; M p6 ~' {
12. Polarization
: ?% ?/ b, b% W& u& L) C0 B13. Scattering
1 H6 b0 c5 m, d# u14. Interference" v3 O" \ G( A8 J S _" V) C h
15. Diffraction |
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