Chungpin Liao 1
Professor:Chungpin Liao (Hovering)
廖重賓 (飛翔)
國立虎尾科技大學光電系
cpliao@alum.mit.edu
Fut ure Economi c Hopes
f or Tai wan (台灣未來 業新希產
望)
2016/10/18
A talk given to 雲科大企管所 10/18/2016
Chungpin Liao 13
創夢募資平台: https://www.ditfunding.com/
Google Solve for X (Taiwan-ITRI):
http://ieknet.iek.org.tw/ITRI/SolveforX.html
Google Solve for X (global): https://www.solveforx.com/
Kickstarter: https://www.kickstarter.com/
Indiegogo: https://www.indiegogo.com
Nine Sigma: http://www.ninesigma.com/
innoCentive: http://www.innocentive.com/
2016/10/18
Chungpin Liao 34
隨處是待解決的問題、等待發明的點子、與無
限的商機
A. 前瞻實驗室 局佈
B. 來自基礎科學的泉源
C. 較具體的商業雛形
D. 新近的研發成果
例:同調控制實驗室( Coherent control lab, CCL )
2016/10/18
35.
35
A. 前瞻實驗室 局佈: Private Research Institute (< 50 人 )
定位 : 創新研發智庫 & 跨領域發明專利之 出機構產
組織架構:一具變形蟲組織活力 & 學習能力之私人研究所
( 對把握:勝過精簡濃縮一千倍以上之工研院人力)絕
論
文
發
表
研發、評估委託案
新事業
經營策略
授權
發明專利
copyright
US PTO
賣斷
Spin Offs計畫導向
解決問題
點子
經濟部民間科專
與國際研究所
, etc.
實驗研發
實驗研發
智權 出產
前瞻技術研究 著作
論文
New Venture 創新研發攻略版圖
2016/10/18 Chungpin Liao
36.
36
Global Scope and Long-Term Goals
Long-Term Goals: The Main Cruiser ( 主巡洋艦 -母公司 )
General coherent control
in chemistry, bio-materials,
human body ( 泛光電同調控制 )
Zero-point energy harnessing
( 真空零點能量之駕馭與應用 )
Whittaker potential applications
(Photogravitobiology, 光重力
生物學 & 應用 )
Virtual world facilitated by large
digital color space ( 新數位色彩
空間與新 擬世界文明虛 )
Near perpetual machine ( 近永動機 )
Non-equilibrium thermodynamics materials & organic chemistry
( 非平衡熱力學領域之材料與有機化學 )
2016/10/18 Chungpin Liao
40
• Technology and facility for licensing and sale:
Formation of low-temperature SiO2 layers in ULSI (gate length ~ 20 nm)
( 低 、低成本半導體二化 製程及機台溫 氧 矽 )
• Technology and devices for licensing and sale:
Guidance of lights / EM waves by electric charges
( 以電荷導引光波 / 電磁波 主動式光學元件及智慧窗 )
• Recipe product for sale:
Germ growth enhancer for medical / food / forensic industries
( 細菌菌種加速培養檢驗配方 )
• Technology and device for licensing and sale:
Novel small motors & dynamic 3D colored display
( 超強微小馬達 & 動態 3D 顯示技術 )
• Technology, recipe, and facility for sale:
Enhanced fermentation to convert new liquor into old ones
( 光電同調引致新酒變老酒 )
Special Project 1:
2016/10/18 Chungpin Liao
41.
41
• Technology and facility for licensing and sale:
Pain detector & coherent treatment
( 疼痛測定儀 &同調治療 )
• Device for licensing and sale:
Creator of inner directional organ
( 方向 在感官生成器內 )
• Technology and facility for licensing and sale:
Diagnostics / treatment via Kirlian photography & math transform
( 運用克里安照相術及數學轉換之醫療偵測與治療方法與機台 )
Special Project 2:
• Technology and facility for licensing and sale:
Light capsule for release of targeted proteins within human body
( 光彈 - 以人為方式激發特定蛋白質之釋放 )
• Device for licensing and sale:
New generation ECG
( 新世代心電圖儀 )
2016/10/18 Chungpin Liao
42.
42
• Ground potential meter & EMI and cross-space electricity siphoning
( 接地電位之量測儀 &由電磁干擾及異地間取電 )
• Plant electricity tapper
( 對植物汲取額外電力之裝置 )- 全球首創,已獲美、臺發明專利
• Seaweed battery & 36-hr lighting cube
(10 小時照明海帶電池, 36 小時照明方塊 - 2 公分立方 )
Special Project 3: 此子計畫皆已有成品
• New chlorophyll, non-toxic batteries & application products
( 新葉 素電池與應用 品綠 產 ) – 如:自 動救生衣、警示尿布、人體醫美啟
• ACF (active carbon fiber) portable battery (e.g., 10 cm x 10 cm x 0.5 cm,
capacity: 13,000 -16,000 mAh)
( 環保可攜式高電量一次電池 )
• Non-metallic organic battery (graphite (-)-graphite(+) recyclable)
( 非金屬、可長期加料使用之一次電池 ) – 如:用於聖誕樹之 LED 燈組
2016/10/18 Chungpin Liao
47
• Technology anddevices for licensing and sale:
Guidance of lights / EM waves by electric charges
( 以電荷導引光波 / 電磁波 主動式光學元件及智慧窗 )
H
E
t
µ ∂
∇× ∇× = −
∂
v
v
( curl on Faraday’s )
ε
ρu
=
=
=
=
uniform ε
Ampere’s
Gauss’E
uniform μ
H
E
t
µ∂
∴∇×∇× = −∇×
∂
v
v
E)E( 2
vv
∇−⋅∇∇ ( )H
t
µ
∂
− ∇×
∂
v
u
E
J
t
ε∂
+
∂
v
v
2
2
2
u uJE
E
tt
ρ
µε µ
ε
∂∂
∴∇ − = ∇ + ÷
∂∂
vv
v
In source-free space (ρu = Ju = 0),
we have:
2
2
2
0
E
E
t
µε
∂
∇ − =
∂
v
v
(wave equation)
(stationery media)
起:緣
TEM 光波的導出係假設
無電荷密度與電流密度
( u = Ju = 0 )。
故可知,電荷的引入
可以影響光波 / 電磁波的
形式、傳遞、穿透、
反射等。換言之,
電荷的存在改變了物質
的折射率。亦即,主動式
光學元件、薄膜的發明
將帶來光學、微波領域之
革命。
2016/10/18 Chungpin Liao
48.
48
應用:
1. 主動式光學元件,用於 ─
Camera
Camcorder
PC/NBCMOS camera
Cell Phone CMOS camera
Google glass
2. Fresnel lens – for CMOS sensors
3. Smart window
( 居家、工商大樓防 、曬
保 、光線強弱調制溫 , etc.)
4. Microwave EMI
protection
現況 :
由穿透光 / 反射光實驗得知,
已具初 成果步
預計成果、時程:
約一年安置、測試機臺及檢測
設備,第二年終 ~ 第三年間 出產
第一批原型元件、薄膜。
e.g., 主動變焦
- 需電漿鍍膜
Current source
2016/10/18 Chungpin Liao
49.
49
• Recipe productfor sale:
Germ growth enhancer for medical / food / forensic industries
( 細菌菌種加速培養檢驗配方 )
起:緣
在醫院中欲判讀患者遭何種細菌或微生物感染常需長時的培養,而往往因之錯失
金醫療時間,例如引發敗血症等。衛生單位欲對公共場所各角落或有爭議的食品等黃
作快速檢驗以取得菌落、菌種分布資料,卻常苦於所需時間過長因而無法掌握時效。
Extracellular recipe-enhanced stationary survival of E. coli and Salmonella
E. coli K12 Salmonella enterica Serovar
Enteritidis
Salmonella enterica Serovar
Typhimurium
recipe
一代每
(約一天)
之存活率
可提高 20 % -
40 % ,而
一代皆可每
繁衍
指數成長差異
2016/10/18 Chungpin Liao
51
• Technology anddevice for licensing and sale:
Novel small motors & dynamic 3D colored display
( 超強微小馬達 & 動態 3D 顯示技術 )
起:緣
儘管其潛在用途相當廣泛,微小(直徑 < 2 mm )而 力大(轉矩扭 > 0.02 N-m )的
馬達在世上基本上還沒有存在過。這主要是因為具高磁通量密度的磁性物質並不
常見之故。一旦克服此點,微小馬達可用於各種穿戴式裝備、自動化設備,如
Google Glass 上元件轉換機制、醫療用晶片測試 bins 上的動態運作、機械微靜脈
注射、微流控制、 視鏡內 / 手術刀遠端操控、肢障精密手指、車上設備精密
自動化、機器人、穿戴式發電裝置、、等。
此外,將此微小馬達用於動態 3D 針幕顯示則可達成最自然、精緻之 3D 視覺,甚至
完全改變 3D 上色之觀念與作法。可用於大螢幕、兵推 明說 / 商業系統、手機螢幕、
動態功能牆面等。
假使垂直螢幕向的機制尺寸能做到更小,則「最大半身突出」之限制便可突破,
亦即全身立體人形可以完全突出呈現,成就影視上的大革命。
目前技術:
微小尺寸、大 力馬達已在設計中,高通量磁膜取得中。低解析度扭 3D display 系統
已完成並展示過。
2016/10/18 Chungpin Liao
52.
5252
Very fine resolution&
new 3D coloring
projection
Vivid, authentic
dynamic 3D objects!
Still rough and awkward
Or, even have
tiny display chips
adhered to the pin heads
預計成果與時程:
預計一年完成微小、具大 力馬達原型,開始開模製造;第三年中完成具高解析度扭
( 2 mm pixel )動態 3D 針幕系統。
2016/10/18 Chungpin Liao
53.
53
• Technology, recipe,and facility for sale:
Enhanced fermentation to convert new liquor into old ones
( 光電同調引致新酒變老酒 )
起:緣
新酒與老酒氣味、口感之不同在於其中酵素蛋白質的濃度、甚至成分的不同,造成
部化合物分布組成的差異所致。然而,吾人知道,一蛋白質的 生係由於其上之內 產
動子啟 ( promoter )被活化之故。本實驗室初 對步 乳酸菌作實驗結果認定我們的理論
是正確的,亦即,鹼基 A, T, G, C 吸收光能量即代表其被活化,一旦被光干 活化涉
之鹼基的數目密度分布與 動子中之鹼基數目密度分布接近,則代表該蛋白質會被啟
統計式的複製出來。
Reference (light) Reference (dark)IR laser Green laser
UV source
預計一年時間找到數種
酒品之酵素 動子、啟
大致光波波長、強度、
交聯參數等;第二年中
提出最佳化作法;第三
年中 出商用原型產
機台。
2016/10/18 Chungpin Liao
54.
54
Theory:
The absorption spectraof all four nucleotides
in the wavelength range of 220nm~300nm
Nucleotides (A, T, G, C) activation probability distribution
established by light interference absorption spectra
= Population probability density distribution of nucleotides
in a promoter
( ) ( )
( ) ( )
( ) ( )
3 3
1 1
, ,
, , ,
3 2
9 2
27 2
A A i T i
i i
A i j T i j
i j i j
A i j k T i j k
i j k i j
a
P f f
b
f f
c
f f
ω ω
ω ω ω ω
ω ω ω ω ω ω
= =
= +∑ ∑ ×
+ ± + ±∑ ∑
×
+ ± ± + ± ±∑ ∑
×
E.g., for 3-wave interference:
similarly for PT, PC, PG, before normalization
f
( 被光干 活化之鹼基的數目密度分布與 動子中之鹼基涉 啟
數目密度分布接近,則代表該蛋白質會被統計式的複製出來 )
2016/10/18 Chungpin Liao
55.
Chungpin Liao 55
Can you, on your own, come up with an “atomic bomb driven by light (ABDBL)“
in detailed design? Also, can such ABDBL occur within human body routinely?
Can SARS and the like be created artificially? If so, how easy or difficult will
it be?
Can you replace “transistor” with some kind of “transVolter”? What’s the merit?
How to really implement the new digital logistics? (Cf. fin- Transistor)
Are near- perpetual machines ( 近似永動機 ) possible? If so, what will be the
impacts?
What’s the EXACT ultimate origin of magnetism in general? For if it is due to
electronic spin, then why optical frequency response can be evidenced in
dielectrics, but not in magnets?
How can a non- metallic magnet be realized? (It’s already invented.) More than
that, how can it be made responsive to high frequencies, e.g., visible lights?
Using negative potential of plant leaves, extra energy tapping can come from
plants.What’s the bio- mechanism that sustain plants’ potential distribution?
B. 來自基礎科學的泉源
2016/10/18
56.
Chungpin Liao 56
The big drawback of all- optic communication is the OEO (optic-
electronic- optic)
bottleneck. How difficult will it be to solve this problem?
TEM wave is the result of vacuum medium from derivation. How would
the presence of charges and currents affect the form and propagation
of lightwaves, and in whatever constructive manner? Further, however,
how come in a nonmagnetized plasma full of charges, TEM wave is a
normal mode of propagation?
Other than dielectric charges, active charges should be able to
influence the EM waves too. If so, why not we begin to have active-
charge- controlled optics (ACCO)?
What’s Si- air battery? Can it replace Li- batteries?
What’s the chlorophyll battery? Can pheophytin and DNA be catalysts
in H2 fuel cells?
2016/10/18
57.
Chungpin Liao 57
Why would an ant approach a drop of molasses hastily but evade sugar factory
totally? What’s the “sense” toward a “material”? What about that of a shark?
Do plants have nerve systems? How do they coordinate daily body functions?
The bonding capability of C is the same as that of N+
, why did
not the latter appear at all? What’s the energy map or factors involved? Can
N+
H4 be a high energy storage material (cf. CH4)?
Currently, even first- principle quantum mechanical calculations stand on
equilibrium thermodynamics. What can we explore about this abundant
energy geography and new possibilities? (not just semiconductors)
Can a material or living matter be modified in a coherent- controlled manner?
How are proteins in our body induced and produced? What’s the reasonable
mechanisms? Any light- induced ones? (LightCapsule , 光彈 ) Applications?
Can large artificial atoms and molecules be created? Can you imagine what the
future would be like with them?
2016/10/18
58.
Chungpin Liao 58
Even in equilibrium thermodynamics, varying the lattice constants alone
can already lead to new materials of utterly different properties, not to
mention mixing up different elements. Any thoughts for the future?
How to measure the work function of a non- conductor? How to manipulate
work functions for good reasons? [better electric connection, material
properties, potential- engaging of a device or organ, surface properties
engineering] – other than applying radioactive materials
How do identical stem cells evolve into differently functioning cells? Any
relation with charge distribution or potential distribution of the
environment? [A look into the STAP invention –Obokata Haruko]
Chlorophyll and hemoglobin ( 血紅素 ) molecules are different mainly in
the central hemmed ions (Mg2+
and Fe2+
). Can chlorophylls be converted into
hemoglobins economically?
2016/10/18
59.
Chungpin Liao 59
What’s really behind the gravitational constant G? Is Special
Relativity correct between light and matter? Can it be varied for
good purposes, such as weight lifting (anti- gravity) or traction in
outer space? Any other practical applications?
Is zero- point energy (ZPE) for real? Can you prove it right or wrong?
(Cf. Ge in ginseng, superconducting maglev)
What’s the exact cause of life and death of a virus? Can light
coherent control has a say in this process? Also, any applications on
capsid (衣殼 ) of virus?
What’s the exact mechanism of Herpes zoster ( 帶 疱疹狀 , or shingle)
and migraine ( 偏頭痛 ) due to it? Any photonics- oriented treatment
methods?
Color memory can constitute a huge new digital space of, e.g., 256
x 256 x 256 = 16,777,216 RGB- mixed values per bit. What’s the
applications you can think of? How to implement it?
2016/10/18
Chungpin Liao 61
Now,look at ( 2 ) case: 2-dipoles in end-fire array )( λ<<
If
2
&
2
ka
4
a 01
π
αα
πλ
=−=⇒= ( driven 90º out of phase )
)
4
cossin
4
(cossin4),(
)
4
cossin
4
cos(2
222
a
2
o
a
π
ϕθ
π
θϕθψ
π
ϕθ
π
ψ
ψψ +×=⋅=
+=∴
single dipole array
radiation pattern
EM wave is along -x direction.
Radiation in the +x direction
cancels, and the array is
unidirectional.
2016/10/18
62.
Chungpin Liao 62
Now,look at ( 3 ) case: finite 2-dipoles in end-fire array )( λ≤
−
=
θ
θ
θψ
sin
)coscos()cos(
)sin(k
2
)( 2
k
2
k
2
ko
+×
−
⋅=
⋅=∴
4
cossin
4
cos
sin
)coscos()cos(
)(sink
4 2
2
2
k
2
k
2
k222
2
a
2
o
π
ϕθ
π
θ
θ
ψψψ
2o14 ,a πλ
αα =−=
( 12.4.8 )λ</<
if
2016/10/18
Chungpin Liao 83
OnCreating Phantom Resonance at
Targeted Optical Frequencies
Chungpin Liao1,2
, Hsien-Ming Chang1
, Shan-Ming Lan3
,
and Tsun-Neng Yang3
1
No. 64, WenHua Rd.,
Graduate School of Electro-Optic and Material Science,
National Formosa University (NFU), Huwei, Taiwan 632, ROC
2
No. 6C, 88-8, Ta-Tun 20th St.,,
Advanced Research & Business Lab. (ARBL), Taichung, Taiwan 407, ROC
3
Institute of Nuclear Energy Research (INER), Lungtan, Taiwan 325, ROC
Tel: +886-5-631-5670, Fax: +886-5-632-9257, Email: cpliao@alum.mit.edu)
2016/10/18
84.
Chungpin Liao 84
Motivation:
SOC (system- on- a- chip) era ⇒ system integration ⇒ isolation
再創高效率半導體專業分工價 鏈值 粒子處理站
建立技術屏障以促成區域性 業優勢產 : (cf. prior art) ( 導計畫)矽
To set foot in general particle beam applications
粒子處理
核研所-奧博
專案團隊
Design rules
templat
e
High yield
IP
供應商
Si tests
2016/10/18
85.
On the Possibilityof Manipulating Lightwaves
via Active Electric Charges
Chungpin Liao1,2,*
Li-Shen Yeh,2
Wen-Bing Lai,1,2
Jyun-Lin Huang,1,2
(廖重賓) (葉立紳) (賴玟柄) (黃均霖)
1
Graduate School of Electro-Optic and Materials Science,
National Formosa University (NFU), Huwei, Taiwan 632, ROC.
2
Advanced Research & Business Laboratory (ARBL),
Taichung, Taiwan 407, ROC.
*Corresponding Author: cpliao@alum.mit.edu and speaker
2016/10/18 85Chungpin Liao
D. 新近的研發成果
86.
A Suspected DerivativeMorphology for
pheophytin ( 葉 素脫鎂 綠 ) and the Enhanced
Hydrogen Decomposition It Caused
Jyun-Lin Huang,2
Wen-Bing Lai,2
Chungpin Liao,1,2,*
Li-Shen Yeh2
(黃均霖) (賴玟柄) (廖重賓) (葉立紳)
1
Graduate School of Electro-Optic and Materials Science,
National Formosa University (NFU), Huwei, Taiwan 632, ROC.
2
Advanced Research & Business Laboratory (ARBL),
Taichung, Taiwan 407, ROC.
*Corresponding Author: cpliao@alum.mit.edu and Speaker
2016/10/18 86Chungpin Liao
87.
Room-Temperature DNA-Catalyzed Hydrogen
FuelCell
Wen-Bing Lai,2
Jyun-Lin Huang,2
Chungpin Liao,1,2,*
Li-Shen Yeh2
(賴玟柄) (黃均霖) (廖重賓) (葉立紳)
1
Graduate School of Electro-Optic and Materials Science,
National Formosa University (NFU), Huwei, Taiwan 632, ROC.
2
Advanced Research & Business Laboratory (ARBL),
Taichung, Taiwan 407, ROC.
*Corresponding Author: cpliao@alum.mit.edu and Speaker
2016/10/18 87Chungpin Liao
Editor's Notes
#86 Mainly to ask two questions: 1. Will active charges be responsive to incident lightwaves? 2. If so, how to use active charges for the manipulation of lightwaves?