• 검색 결과가 없습니다.

˜ my ¢= k ° Ë Ñ” Ö «˜ ×M õ u § T “ Ó Þ” X ¢ OR/NOR M  Ö «  ¹ Ű Ë Ñ À X ØP } º

N/A
N/A
Protected

Academic year: 2021

Share "˜ my ¢= k ° Ë Ñ” Ö «˜ ×M õ u § T “ Ó Þ” X ¢ OR/NOR M  Ö «  ¹ Ű Ë Ñ À X ØP } º "

Copied!
5
0
0

로드 중.... (전체 텍스트 보기)

전체 글

(1)

Œ

˜ my ¢= k ° Ë Ñ” Ö «˜  ×M õ u § T “ Ó Þ” X ¢ OR/NOR  M  Ö «  ¹ Ű Ë Ñ À X ØP } º 

L |# Ü ` 9

“

¦ 9@ /† < Ɠ § „   ( Ž É Ó' / B N † < Æõ , " fÖ  ¦ 136-701; ô  Dz D G õ † < Æl Õ ü tƒ  ½ ¨" é ¶ t 0 p x r Û ¼% 7 ›ƒ  ½ ¨‘ : r  Ò, " fÖ  ¦ 136-791

ƒ

‘

š . > ­ £

“

¦ 9@ /† < Ɠ § „   ( Ž É Ó' / B N † < Æõ , " fÖ  ¦ 136-701

_ 

@* å ?  · b 9 * å  * >

ô

 Dz D G õ † < Æl Õ ü tƒ  ½ ¨" é ¶ t 0 p x r Û ¼% 7 ›ƒ  ½ ¨‘ : r  Ò, " fÖ  ¦ 136-791 (2008¸   1 Z 4 31{ 9  ~ à Î6 £ §)

ì

ø ͕ ¸^ ‰ F g7 £ x; Ÿ ¤ l  ? /_  “ § s 1 p q  › ¸ (XGM: Cross Gain Modulation)\  ¦ s 6   x # Œ ORü < NOR_ 

 7

H o ƒ  í ß –`  ¦ 1 l x r \  à º' Ÿ    H  l 0 p x „  F g  7 H o ™ è \  ¦ ½ ¨$ í % i  .  l 0 p x „  F g OR/NOR  7 H o ™ è 

 

H RZ { 9 § 4 ’    ñ– Ð 10 Gbit/s „  5 Å x \ " f 1 l x  Œ • 0 p x † < Ê`  ¦ 7 £ x" î % i  .  7 H o ƒ  í ß – ORü < NOR\  ¦ 1 l x r  Ã

º' Ÿ  l  0 AK  š ¸f ”  2> h_  ì ø ͕ ¸^ ‰ F g7 £ x; Ÿ ¤ l ü < 1> h_  F gí  H¨ 8 Š l \  ¦  6   x % i  .

PACS numbers: 42.25.Bs

Keywords: „  F g 7 H o ƒ  í ß –™ è , ì ø ͕ ¸^ ‰ F g7 £ x; Ÿ ¤ l , “ § s 1 p q  › ¸,  7 H o ½ + Ë,  Ò& ñ  7 H o ½ + Ë

I. " e  ] Ø

F

g í ß –\ O “ É r † ¾ ÓÊ ê כ ¹½ ¨÷ &  H & ñ ˜ Ð o, \  -t , ¨ 8 Š â ë  H ] j\  ¦ K

     H Ù þ ˜d ” í ß –\ O Ü ¼– Ð œ í“ ¦5 Å q & ñ ˜ Ð: Ÿ x’  } © œ_  ½ ¨» ¡ ¤`  ¦ : Ÿ x ô

 Ç & ñ ˜ Ð o   r z  ´‰ & ³`  ¦ 0 Aô  Ç € 9 à º í ß –\ O s  . : £ ¤ y , 6 £ §

$ í

’    ñ, 1 l x% ò  © œ 1 p x _  Y O w p n # Q " fq Û ¼\  ¦ 0 AK  כ ¹½ ¨÷ &



 H „  5 Å x à ºכ ¹\  ¦ Ø  æ7 á ¤ r ~  ´ à º e ”   H œ í“ ¦5 Å q @ /6   x | ¾ Ó & ñ ˜ Ð :

Ÿ x’  } © œ_  ½ ¨» ¡ ¤`  ¦ 0 AK , l ç ß –} © œ_  & ñ ˜ Ð% ƒo  6   x | ¾ Ós  à ºÑ þ ˜ Gbit/s \ " f à º Tbit/s– Ð_  7 £ x  כ ¹½ ¨  ) a  . Õ ª QÙ ¼– Ð Y O  w

p n # Q " fq Û ¼\  ¦ 0 AK   6   x| ¨ c @ /6   x | ¾ Ó_  X <s ' \  ¦ “ ¦ 5

Å

q Ü ¼– Ð „  5 Å x, % ƒo , “ § ¨ 8 Š ½ + É Ã º e ”   H „  F g ’    ñ% ƒo  l Õ ü t

\

 @ /ô  Ç ƒ  ½ ¨  Ö ¸ µ 1 Ïy  ”  ' Ÿ ÷ &# Qt “ ¦ e ”   [1–4].

Õ

ª ×  æ \ " f „  F g  7 H o ƒ  í ß –  © œu [ þ t“ É r F g ’    ñ% ƒo  † < Êà º[ þ t

`

 ¦  6   x   H „  F g Û ¼0 Ag A, F g ’    ñ F Ò q t, # Q× ¼Y UÛ ¼ x 9 K ‰



8 5 p x“  , J ‡   B g A, J o w  ^ ‰( ç 1 p x _  [ j@ / œ í“ ¦5 Å q W 1 à

Ô0 >ß ¼_  ×  æ כ ¹ô  Ç כ ¹™ è  ) a  . ‰ & ³ n t _ O  l Õ ü t _  „  F g  7 H o

 ƒ  í ß –“ É r „  -F g ’    ñ   ¨ 8 Š (electro-optic conversion) _  4

Ÿ

¤ ¸ ú šô  Ç  © œE כ ¹“  s  µ 1 ÏÒ q t ) a  . “ ¦– Ð l ‘ : r& h “   „  F g  7 H o 

™

è [ þ t (AND, NAND, OR, NOR, XOR, XNOR)`  ¦ n  t

_ O  F g ’    ñ% ƒo  • ¸½ ¨– Ð+ ‹  Ö ¸6   x ô  Ç : Ÿ x’  r Û ¼% 7 ›s  € 9 כ ¹

–

Ð # Œ”   . Õ ªA " f  € ª œô  Ç „  F g  7 H o ƒ  í ß –\  › ' a ô  Ç l Õ ü t [

þ

t s  ƒ  ½ ¨÷ &# Q M ® o% 3  . \ V\  ¦ [ þ t # Q, q ‚  + þ A F g À Òá Ô p  Q

E-mail: [email protected]

(NOLM: Nonlinear Optical Loop Mirror), Sagnac ç ß –[ O  l

 (Sagnac Interferometer) 1 p x _  F g$ 3 Ä »\ " f % 3 `  ¦ à º e ” 



 H q ‚  + þ A$ í `  ¦ s 6   x ô  Ç „  F g  7 H o > s à Ô e ”  . Õ ª Q , F

g$ 3 Ä »_  q ‚  + þ A$ í `  ¦ s 6   x ô  Ç „  F g  7 H o > s à ԍ  H כ ¹½ ¨÷ &



 H  Òx \  _ K  a % v“ É r / B N ç ß –_   Ö ¸6   x • ¸ b  # Qf ” `  ¦ ^  ¦ à º e ”

  [5,6]. Õ ª\  ì ø ÍK  ì ø ͕ ¸^ ‰ F g7 £ x; Ÿ ¤ l \  ¦ : Ÿ x ô  Ç  © œ  ¨ 8 Š l

Õ ü t“     F g  ™ D ¥ ½ + Ë (FWM: Four Wave Mixing), “ §  0

A © œ  › ¸ (XPM: Cross Phase Modulation), “ § s 1 p q  

›

¸ (XGM: Cross Gain Modulation)\  ¦ s 6   x €   F g$ 3 Ä » _

 q ‚  + þ A$ í `  ¦ s 6   x ô  Ç „  F g  7 H o > s à Ԙ Ð  a ž ?™ èô  Ç  © œ

™

è\ " f_   Ö ¸6   x • ¸\  ¦ Z  }{ 9  à º e ”   H „  F g  7 H o > s à Ô_  > h µ

1 Ïs  0 p x K ”   . ‘ : r A  ì ø ͕ ¸^ ‰ F g7 £ x; Ÿ ¤ l \  ¦ l ì ø Íô  Ç  © œ



 ¨ 8 Š l Õ ü t[ þ t“ É r Z  }“ É r F g s 1 p q, Z  }“ É r F g Ÿ í o Ø  ¦§ 4 „  § 4 , V , “ É r

 © œ@ /% i , ™ è+ þ A o Õ ªo “ ¦   É r ì ø ͕ ¸^ ‰ F g  © œu [ þ t õ _  ƒ   1

l x | 9 & h  o 0 p x$ í \  › ' a # Œ ƒ  ½ ¨÷ &# Q M ® o% 3 Ü ¼ , s  ì ø ͕ ¸

^

‰ F g7 £ x; Ÿ ¤ l \  ¦ s 6   x ô  Ç  © œ   ¨ 8 Š l Õ ü t[ þ t ×  æ _   “   “ §

s 1 p q  › ¸ l Õ ü t`  ¦ „  F g  7 H o ™ è  > hµ 1 Ï\  6 £ x6   x €    

 É

r  © œ   ¨ 8 Š l Õ ü t[ þ t ˜ Ð  ç ß –é ß – >  ½ ¨‰ & ³½ + É Ã º e ” >   ) a  .

¢

¸ô  Ç { 9 § 4 ÷ &  H ’    ñ_  ¼ # F g \  _ ” > r t  · ú §  H    H  © œ& h  s

 e ”   [7–9].

„

 F g  7 H o ƒ  í ß –  © œu [ þ t ×  æ \ " f ¢ - a„   | 9 ½ + Ë (complete set)“   „  F g  7 H o ™ è \  ¦ s 6   x €   e ” _ _  Ô  ¦ † < Êà º (Boolean function)\  ¦   è ­ q à º e ”  . ¢ - a„   | 9 ½ + ˓   „   F

g  7 H o ™ è ê ø Í, e ” _ _  Ô  ¦ † < Êà º\  ¦   ? /l  0 AK ‚    7 H o 

-502-

(2)

l

\  (AND, NOT), (OR, NOT), (NAND), (NOR)  7 H o 

ƒ

 í ß –[ þ t`  ¦ ¢ - a„   | 9 ½ + Ës   Â ÒØ Ô 9, s   7 H o  ƒ  í ß –`  ¦ „  F g Ü ¼

–

Ð % ƒo  0 p x ô  Ç  7 H o ™ è \  ¦ ¢ - a„   | 9 ½ + Ë  7 H o ™ è   ô  Ç



. Õ ª Q l \  # Œ Q 7 á x À Ó_  „  F g  7 H o ™ è [ þ t ×  æ \ " f  7 H o

ƒ  í ß – OR ¢ ¸  H NOR _   7 H o ™ è   H e ” _ _  Ô  ¦ † < Êà º\  ¦



 ? /l  0 Aô  Ç „  F g  7 H o † < Êà º\ " f € 9 כ ¹ô  Ç כ ¹™ è– Ð ^  ¦ à º e ”

 . Õ ªA " f OR ¢ ¸  H NOR ƒ  í ß –`  ¦ à º' Ÿ    H „  F g  7 H o 

™

è _  > hµ 1 Ïs   6 £ § õ  ° ú  s  s # Qt “ ¦ e ”  . NORƒ  í ß –`  ¦ Ã

º' Ÿ    H  7 H o ™ è – Ð" f, 2> h_  # î § > =+ þ A ì ø ͕ ¸^ ‰ F g7 £ x; Ÿ ¤ l 

\

 ¦ s 6   x    Michelson ç ß –[ O l  (Michelson interferom- eter)\  ¦ l ì ø ÍÜ ¼– Ð ô  Ç ì ø ͕ ¸^ ‰ F g7 £ x; Ÿ ¤ l – Ð > hµ 1 Ï÷ &% 3 Ü ¼ 9, ORƒ  í ß –`  ¦ à º' Ÿ    H  7 H o ™ è   H ì ø ͕ ¸^ ‰ F g7 £ x; Ÿ ¤ l ü < ç ß – [ O

l \  ¦ s 6   x # Œ > hµ 1 Ï÷ &% 3   [10–12]. ô  Ǽ # , ‘ : r ƒ  ½ ¨h Ë >“ É r

"

f– Ð   É r ¿ º  © œ_  * 3 á Ԓ    ñ\  ¦ s 6   x ô  Ç „  F g NOR ü < é ß – { 9

 ì ø ͕ ¸^ ‰ F g7 £ x; Ÿ ¤ l \  ¦ s 6   x ô  Ç “ ¦5 Å q NOR – Ð > hµ 1 Ï # Œ M ® o



 [13,14].

‘

: r  7 Hë  H \ " f  H ì ø ͕ ¸^ ‰ F g7 £ x; Ÿ ¤ l _  “ § s 1 p q  › ¸ : £ ¤$ í

`

 ¦ s 6   x # Œ, 2> h_  ì ø ͕ ¸^ ‰ F g7 £ x; Ÿ ¤ l  ë ß –Ü ¼– Ð 10 Gbit/s\ 

"

f  7 H o ƒ  í ß – ORü < NOR\  ¦ 1 l x r \  à º' Ÿ    H „  F g  l  0

p

x  7 H o  ™ è _  ½ ¨‰ & ³`  ¦ — ¸_ z  ´+ « >Ü ¼– Ð 7 £ x" î % i  .

II. Œ ˜ my ¢= k ° Ë Ñ” Ö «˜  ×M 8 ý w ‹ T Ž Ö ¤ ì Å º — ¤V R Ë

ì

ø ͕ ¸^ ‰ F g7 £ x; Ÿ ¤ l   H l ‘ : r& h Ü ¼– Ð € ª œ= å Q  Òì  r _  / B N”  `  ¦ 0 A ô

 Ç ì ø Í  â (mirror)s  \ O   H ì ø ͕ ¸^ ‰ Y Us $   s š ¸× ¼ü <

Ä

»   . = å Q é ß –\ " f_  ? /Â Ò ) ¨ 8 ŠH † d`  ¦ ~ ½ Ót  l  0 A # Œ, ì

ø Í Ö  ¦ 10

−3

∼ 10

−4

˜ Ð  ± ú • ¸2 Ÿ ¤ Á ºì ø Í   ïh A (anti- reflection coating)`  ¦ # ŒÅ Ò>   ) a  . ì ø ͕ ¸^ ‰ F g7 £ x; Ÿ ¤ l \ 

„

 À Ó “   | ¨ c M : ì ø ͕ ¸^ ‰ F g7 £ x; Ÿ ¤ l  ? / Ò_  „   [ þ t s  [ þ t

›

 H  © œI  ÷ & 9, [ þ t›  H  © œI _  „   [ þ t“ É r { 9  ÷ &  H F g ’    ñ

\

  F G ÷ &# Q  { Œ • © œI – Ð b  # Qt >   ) a  . s  % ò † ¾ Ó\  _ K  { 9

   ) a F g ’    ñ  H 7 £ x; Ÿ ¤ ÷ &# Q ~ ½ ÓØ  ¦ ) a  . 7 £ ¤, ì ø ͕ ¸^ ‰ F g7 £ x

;

Ÿ

¤ l  ? /\ " f 7 £ x; Ÿ ¤ ) a { 9 § 4  F g ’    ñ  H î  r ì ø Í^ ‰ (carrier)\  ¦

™

è— ¸ >  ÷ &  H X <, s  M :_  ì ø ͕ ¸^ ‰ F g7 £ x; Ÿ ¤ l _  F g s 1 p q (gain)“ É r y Œ ™™ è >   ) a  . s \  ¦ s 1 p q Ÿ í o  © œI  (gain sat- uration state)    ҏ É r  . ì ø ͕ ¸^ ‰ F g7 £ x; Ÿ ¤ l _  î  r ì ø Í^ ‰| ¾ Ó_ 



  o  H { 9  ÷ &  H — ¸Ž  H F g ’    ñ[ þ t \  % ò † ¾ Ó`  ¦ p u >  ÷ & 9, { 9

 ÷ &  H F g ’    ñ_  s 1 p q s  ° ú  s  { 9  ÷ &  H   É r  © œ @ /

% i

`  ¦  6   x   H F g ’    ñ_  s 1 p q \  % ò † ¾ Ó`  ¦ p u • ¸2 Ÿ ¤ † < ʕ ¸

0 p x K ”   . s  Qô  Ç ì ø ͕ ¸^ ‰ F g7 £ x; Ÿ ¤ l  t   H q ‚  + þ A :

£ ¤$ í `  ¦ “ § s 1 p q  › ¸ (XGM)  ô  Ç . Fig. 1– Ð s  “ §  s

1 p q  › ¸ : £ ¤$ í `  ¦ · ú ˜l  ~ 1 >  ³ ð‰ & ³ % i  . * 3 á Ԓ    ñ– Ð+ ‹

Fig. 1. Principle of XGM in a semiconductor optical amplifier.

Fig. 2. Scheme diagram of the OR and NOR gates by using the XGM.

ì

ø ͕ ¸^ ‰ F g7 £ x; Ÿ ¤ l \  F g ’    ñ (input signal) { 9  ÷ &€   ì ø Í

•

¸^ ‰ F g7 £ x; Ÿ ¤ l  ? / Ò_  î  r ì ø Í^ ‰[ þ t`  ¦ “ ¦° ú ˜ (carrier deple- tion) r v >   ) a  . î  r ì ø Í^ ‰\  ¦ “ ¦° ú ˜r &  s 1 p q Ÿ í o  © œI – Ð Ä

»• ¸ €  , * 3 á Ԓ    ñü < ° ú  s  { 9  ÷ &  H á Ԗ ÐÚ Ô’    ñ (con- tinuous pulse train) _  F g y © œ• ¸ (intensity) y Œ ™™ è÷ &  H " é ¶

“

 s   ) a  . Õ ª QÙ ¼– Ð, ì ø ͕ ¸^ ‰ F g7 £ x; Ÿ ¤ l  ? /_  á Ԗ ÐÚ Ô ’    ñ _

 F g y © œ• ¸ y Œ ™™ è– Ð “  K  Ø  ¦§ 4 Ü ¼– Ð  ü <  ½ + É ` O Û ¼ ’    ñ

 Õ ªa Ë >\ " f% ƒ! 3  ” > r F  t  · ú §>   ) a  . ì ø Í@ /– Ð * 3 á Ô ’    ñ (pump signal)  { 9  ÷ &t  · ú §  H ½ ¨ç ß –{ 9   â Ä º, Ø  ¦§ 4 ÷ &  H á

Ԗ ÐÚ Ô ’    ñ  H ì ø ͕ ¸^ ‰ F g7 £ x; Ÿ ¤ l _  “ § s 1 p q  › ¸ { 9 # Q



t  · ú §  Õ ª ´ òõ \  ¦ ~ à Ît  · ú §€ Œ ¤Ü ¼Ù ¼– Ð { 9    ) a ` O Û ¼ ’    ñ J

‡   Õ ª@ /– Ð Ø  ¦§ 4 ÷ &>   ) a  . s o  # Œ { 9 § 4 ’    ñ_  J ‡   õ

 & ñ ì ø Í@ /_  J ‡  `  ¦ t m   H   ¨ 8 Š ) a ` O Û ¼ ’    ñ\  ¦ ½ ¨‰ & ³  0

p

x ž Ð2 Ÿ ¤ ½ + É Ã º e ” >   ) a  .

III. À X ØP Ž ì ō ˜ m Ž Ò ÞX c l Ì ¦ RP  õ m Í + s ÇÊ Ý

ì

ø ͕ ¸^ ‰ F g7 £ x; Ÿ ¤ l _  Ä »• ¸~ ½ ÓØ  ¦Ö  ¦ (stimulated emission

rates)“ É r { 9 § 4 F g " é ¶ _  F g y © œ• ¸\  _ ” > r ô  Ç . “ ¦„  § 4  F g " é ¶ s 

(3)

Fig. 3. Architecture for the all-optical OR and NOR based on two SOAs.

{ 9

§ 4 | ¨ c r , · ú ¡" f ƒ  / å L % i 1 p w s  î  r ì ø Í^ ‰  H Ä »• ¸~ ½ ÓØ  ¦`  ¦ : Ÿ x K

 “ ¦° ú ˜÷ &# Q ì ø ͕ ¸^ ‰ F g7 £ x; Ÿ ¤ l _  F g s 1 p q y Œ ™™ èü < ° ú  s   ) a



. ì ø ͕ ¸^ ‰ F g7 £ x; Ÿ ¤ l – Ð * 3 á Ô ` O Û ¼ ’    ñ { 9  ÷ &  H 1 l x î

ß –\  î  r ì ø Í^ ‰  H “ ¦° ú ˜÷ &# Q s 1 p q Ÿ í o  © œI  t  ”  ' Ÿ | ¨ c  â Ä

º, s M :\  { 9  ÷ &  H á Ԗ ÐÚ Ô ` O Û ¼ ’    ñ  H F g y © œ• ¸ y Œ ™™ è\  ¦

 

>   ) a  . s  " é ¶ o \  ¦ s 6   x ô  Ç ORü < NOR 7 H o ƒ  í ß –`  ¦ 1 l x r

 à º' Ÿ    H  l 0 p x F g  7 H o ƒ  í ß – ™ è \  ¦ Fig. 2 \ " f ˜ Ð

#

Œï  r  . 8 ú x 2 > h_  ì ø ͕ ¸^ ‰ F g7 £ x; Ÿ ¤ l \  ¦  6   x % i Ü ¼ 9, ' Í



 P : ì ø ͕ ¸^ ‰ F g7 £ x; Ÿ ¤ l \ " f NOR 7 H o ƒ  í ß –`  ¦, ¿ º  P : ì ø Í

•

¸^ ‰ F g7 £ x; Ÿ ¤ l \ " f  H ' Í   P :\ " f % 3 “ É r NOR 7 H o ƒ  í ß –`  ¦ :

Ÿ

x K  OR 7 H o ƒ  í ß –`  ¦ ° ú  s  à º' Ÿ ž Ð2 Ÿ ¤ % i  . 7 £ ¤, NOR  7 H o

ƒ  í ß – (Boolean (A + B))“ É r á Ԗ ÐÚ Ô ’    ñ– Ð" f 9 þ t! 3  ’    

ñ\  ¦, * 3 á Ô ’    ñ– Ð" f  7 H o ƒ  í ß –`  ¦ 0 Aô  Ç A’    ñü < B’    ñ

\

 ¦ ½ + Ëô  Ç A + B’    ñ\  ¦ ' Í   P : ì ø ͕ ¸^ ‰ F g7 £ x; Ÿ ¤ l \  “ §  { 9

 r v €   % 3 `  ¦ à º e ” >   ) a  . OR  7 H o ƒ  í ß –• ¸ ° ú  “ É r ½ ¨

$ í

Ü ¼– Ð, ' Í   P : ì ø ͕ ¸^ ‰ F g7 £ x; Ÿ ¤ l \ " f % 3 “ É r NOR  7 H o ƒ   í

ß –° ú כ`  ¦ * 3 á Ô ’    ñ– Ð, 9 þ t! 3  ’    ñ\  ¦ á Ԗ ÐÚ Ô ’    ñ– Ð" f ¿ º   P

: ì ø ͕ ¸^ ‰ F g7 £ x Ÿ íl \  “ §  { 9  r †   . NOR  7 H o ƒ  í ß –

° ú

כ`  ¦ t m   H * 3 á Ô ’    ñ  H Õ ª ` O Û ¼ J ‡  `  ¦ Õ ª@ /– Ð Ä »t  

€

 " f Ø  ¦§ 4 ÷ &“ ¦ á Ԗ ÐÚ Ô ’    ñ– Ð+ ‹ { 9    ) a 9 þ t! 3 ’    ñ  H OR

ƒ

 í ß –° ú כ`  ¦ t m   H ` O Û ¼ J ‡  Ü ¼– Ð Ø  ¦§ 4  ) a  . Õ ª QÙ ¼– Ð ¿ º

t  „  F g  7 H o  ƒ  í ß – (OR, NOR)`  ¦ à º' Ÿ    H é ß –{ 9  o  ) a r

Û ¼% 7 ›Ü ¼– Ð ½ ¨$ í s  0 p x K ”   .

2 > h_  ì ø ͕ ¸^ ‰ F g7 £ x; Ÿ ¤ l \  ¦ s 6   x ô  Ç „  F g OR, NOR  7 H o

ƒ  í ß –  © œu _  ½ ¨$ í • ¸  H Fig. 3 õ  ° ú   . ‘ : r  7 H o ƒ  í ß –  © œ u

_  { 9 § 4  ’    ñ“   * 3 á Ô, á Ԗ ÐÚ Ô, 9 þ t! 3  ’    ñ[ þ t“ É r — ¸× ¼  Œ ™ F

K ) a DFB Y Us $   s š ¸× ¼– Ð, ∼20 dB_  ™ è F g q  (ex- tinction ratio)\  ¦ ° ú   H RZ ` O Û ¼ J ‡  `  ¦ 100 ps Å Òl  (10 Gbit/s) – Ð µ 1 ϔ  , F Ò q t÷ &  H ’    ñ F Ò q tl \  ¦ — ¸4 S q– Ð % i  .

ì

ø ͕ ¸^ ‰ F g7 £ x; Ÿ ¤ l   H Alcatel  _  ] j¾ ¡ § (model no.1901)`  ¦

—

¸4 S q– Ð # Œ, ×  æd ”   © œ“ É r 1552 nm, î  r ì ø Í^ ‰ à º" î (car- rier life time) s  800 ps,  Ö ¸$ í  o% ò % i U  ´s  (active region length)  600 µms “ ¦ € ª œ€   ì ø Í Ö  ¦ s  10

−3

& ñ • ¸_  Á ºì ø Í



 ~ à Ì} Œ •7 £ x ‚ Ã Ì  ) a ì ø ͕ ¸^ ‰ 7 £ x; Ÿ ¤ l – Ð" f fiber-to-fiber s 1 p q“ É r 23 dB (@200 mA)\  ¦ & ’  .  7 H o ƒ  í ß – à º' Ÿ `  ¦ 0 AK  { 9 

Fig. 4. Simulation results of logic OR and NOR oper- ations: (a) signal A, (b) signal B, (c) clock, (d) signal A + B, (e) Boolean (A + B) as logic NOR, and (f) logic OR.

Fig. 5. The eye-diagram of the OR and NOR gates: (a) input signal A and B, (b) logic OR and NOR.

§

4 ’    ñ A  H 1100 _  J ‡  `  ¦ ° ú • ¸2 Ÿ ¤ “ ¦ { 9 § 4 ’    ñ B  H 0110 _  J ‡  `  ¦ ° ú • ¸2 Ÿ ¤ % i  . s o  # Œ  7 H o ƒ  í ß –_  „   õ

& ñ “   (0,0), (0,1), (1,0), (1,1)s  à º' Ÿ  ) a  . ‘ : r { 9 § 4 ’    ñ A ü < B  H 2 × 1 F g  ½ + Ël \  ¦ : Ÿ x K  ½ + ËK t >  ÷ &# Q (A + B) F

gí  H¨ 8 Š l  (circulator)\  ¦ : Ÿ x K  ' Í   P : ì ø ͕ ¸^ ‰ F g7 £ x; Ÿ ¤ l \  { 9

   ) a  . á Ԗ ÐÚ Ô ’    ñ– Ð  6   x| ¨ c 9 þ t! 3  ’    ñ  H 1 × 2 F g ì

 r C l – Ð ì  r l r &  y Œ • ì ø ͕ ¸^ ‰ F g7 £ x; Ÿ ¤ l \  * 3 á Ô ’    ñü <

“

§ s 1 p q  › ¸\  ¦ ° ú • ¸2 Ÿ ¤ { 9  r (   . Õ ª Q€   ' Í   P : ì ø ͕ ¸

^

‰ F g7 £ x; Ÿ ¤ l \ " f NOR  7 H o ƒ  í ß –`  ¦ à º' Ÿ  >  ÷ &“ ¦, Õ ª à º '

Ÿ  ) a NOR  7 H o ƒ  í ß –° ú כ“ É r  r  F gí  H¨ 8 Š l \  ¦ : Ÿ x K  ¿ º  P : ì

ø ͕ ¸^ ‰ F g7 £ x; Ÿ ¤ l _  á Ԗ ÐÚ Ô ’    ñ– Ð" f ”  ' Ÿ ž Ð2 Ÿ ¤ % i  .

Õ

ªo  # Œ ¿ º  P : ì ø ͕ ¸^ ‰ F g7 £ x; Ÿ ¤ l \ " f s # Qt   H “ § s  1

p q  › ¸\  _ K , Fig. 3\ " f% ƒ! 3  y Œ • ”  ' Ÿ ~ ½ ӆ ¾ ÓÜ ¼– Ð OR  7 H o

ƒ  í ß – (ý a)õ  NOR  7 H o ƒ  í ß – (Ä º)s  à º' Ÿ  ) a Ø  ¦§ 4 `  ¦ ° ú 

•

¸2 Ÿ ¤ % i  . Fig. 4  H s ü < ° ú  “ É r ½ ¨› ¸– Ð  © œ6   x  o  ) a á Ô

–

ÐÕ ªÏ þ ›“   VPI Component Maker

T M

`  ¦  6   x # Œ — ¸_ z  ´ +

« >ô  Ç   õ s  . Fig. 4_  ý a8 £ ¤\ P \ " f Ò'  { 9 § 4 ’    ñ Aü <

B, 9 þ t! 3 ’    ñ, & e  ¦  Q\  ¦ : Ÿ x K  % 3 “ É r A + B J ‡  ’    ñ, Õ ªo 

“

¦ þ j7 á x& h Ü ¼– Ð  7 H o ƒ  í ß –÷ &# Q % 3 # Q”   NORü < OR J ‡  

’

   ñs  . s M :_  y Œ • ì ø ͕ ¸^ ‰ F g7 £ x; Ÿ ¤ l _  { 9 § 4  „  À Ó° ú כ“ É r

130 mA% i  . Fig. 5  H : £ ¤& ñ J ‡  `  ¦ ° ú   H ’    ñ     10

(4)



 H  s  s # QÕ ªÏ þ › (eye-diagram)s  . 10 Gbit/s_  “ ¦ 5

Å q  ½ ™ ü  J ‡  `  ¦ ° ú   H { 9 § 4 ’    ñ ”  ' Ÿ ÷ &# Q• ¸ € ª œ  ñ >  1

l

x  Œ • H † d`  ¦ ˜ Ð# ŒÅ ғ ¦ e ” % 3  .

IV. + s Ç Â ] Ø

“

¦5 Å q Ü ¼– Ð 1 l x  Œ •   H „  F g  l 0 p x  7 H o  ™ è \  ¦ — ¸_ z  ´ +

«

>`  ¦ : Ÿ x K  ½ ¨‰ & ³, 7 £ x" î % i  . š ¸f ”  2> h_  ì ø ͕ ¸^ ‰ F g7 £ x; Ÿ ¤ l

\  ¦  6   x % i Ü ¼ 9, “ § s 1 p q  › ¸\  ¦ : Ÿ x ô  Ç q ‚  + þ A F g s  1

p

q : £ ¤$ í `  ¦ s 6   x # Œ  7 H o ƒ  í ß – ORü < NOR\  ¦ à º' Ÿ  # Œ 1

l

x r \  Ø  ¦§ 4 r &  % 3 `  ¦ à º e ” % 3  . ¢ ¸ô  Ç, ‘ : r  7 Hë  H _  „  F g OR/NOR  7 H o ƒ  í ß –l   H ’ < H / 'î  r ½ ¨› ¸– Ð ½ ¨$ í ÷ &# Q e ” l 

\

 F g | 9 & h  o\  q “ §& h  6   x s   9,  8   „  F g W 1à Ô0 >

ß

¼ r Û ¼% 7 ›_  ™ è+ þ A o\  • ¸¹ ¡ § s  | ¨ c  כ Ü ¼– Ð  « Ñ  ) a  .

Y

c p w Š à U Ø ”  ô

[1] J. H. Kim, B. C. Kim, Y. T. Byun, Y. M. Jhon, S. Lee, D. H. Woo and S. H. Kim, Jpn. J. of Appl.

Phys. 13, 421 (2004).

[2] K. E. Stubkjaer, IEEE J. Sel. Top. Quantum Elec- tron. 6, 1428 (2000).

[3] R. E. Wagner, J. Lightwave Tech. 14, 1349 (1996).

[5] A. J. Poustie, K. J. Blow, A. E. Kelly and R. J.

Manning, Optics Commun. 156, 22 (1998).

[6] A. J. Poustie, K. J. Blow, A. E. Kelly and R. J.

Manning, Optics Commun. 168, 89 (1999).

[7] S. H. Kim, J. H. Kim, C. W. Son, G. Kim, Y. T.

Byun, Y. M. Jhon, S. Lee and D. H. Woo, Interna- tional Conference on Numerical Simulation of Semi- conductor Optoelectronic Devices 1, 91 (2006).

[8] S. H. Kim, J. H. Kim, J. W. Choi, Y. T. Byun, Y. M.

Jhon, S. Lee, D. H. Woo and S. H. Kim, Electron.

Lett. 41, 1027 (2005).

[9] D. Nesset, A. E. Kelly and T. Marcenac, IEEE Com- munications Magazine 36, 56 (1998).

[10] A. Hamie et al, IEEE Photon Technol. Lett. 14, 1439 (2002).

[11] T. Fjelde et al, Electron. Lett. 36, 813 (2000).

[12] H. Dong et al, Optics Communications 242, 479 (2004).

[13] Y. T. Byun, S. H. Kim, D. H. Kim, D. H. Woo and S. H. Kim, SAEMULLI (New Phys.) 40, 560 (2000).

[14] Y. T. Byun, K. S. Choi, Y. M. Jhon, D. H. Woo, S.

Lee, S. H. Kim and J. W. Park, Optical Society of

Korea Annual Meeting 1, 168 (2005).

(5)

All-Optical OR/NOR Bi-Functional Logic Gate Obtained by using Semiconductor Optical Amplifiers

Kyoung Sun Choi

Department of Electronics and Computer Engineering,

Korea University, Seoul 136-701; Intelligent System Research Division, Korea Institute of Science and Technology, Seoul 136-791

Jinwoo Park

Department of Electronics and Computer Engineering, Korea University, Seoul 136-701

Young Tae Byun and Young Min Jhon

Intelligent System Research Division, Korea Institute of Science and Technology, Seoul 136-791 (Received 31 January 2008)

An OR/NOR bi-functional all-optical logic gate has been constructed by using cross-gain mod- ulation (XGM) in SOAs (semiconductor optical amplifiers). We have shown that the OR/NOR bi-functional all-optical logic gate operates well with RZ input signals at 10 Gbit/s. Only 2 SOAs and 1 circulator have been used to perform the OR/NOR bi-functional all-optical logic operation.

PACS numbers: 42.25.Bs

Keywords: Optical logic gates, Semiconductor optical amplifier, Cross-gain modulation, OR, NOR

E-mail: [email protected]

수치

Fig. 1. Principle of XGM in a semiconductor optical amplifier.
Fig. 3. Architecture for the all-optical OR and NOR based on two SOAs.

참조

관련 문서

First, we study the synchronizability of the proteins in the same functional classes of the protein-protein interaction network (PIN).. In order to define the hierarchy among

The experimental results demonstrated that the plastic optical fiber could be applied as an alternative to a conventional light source for liquid crystal displays by adjusting

In this way a beam of laser is used to be diffracted by the grating in the spectrometer with the light to be analyzed, so that the spot of the diffracted beam can be used as a

We present the current activities on high-energy physics at KISTI (Korea Institute of Science and Technology Information) in Korea and IN2P3 (National Institute of Nuclear Physics

In order to obtain the thermooptic coefficient, which is the temperature-dependent refractive index of optical crystals such as ADP and KDP, we performed a Michelson

Bell’s inequality is analyzed in the Bell states produced by a Hong-Ou-Mandel interferometer by placing 2 HWPS and 2 QWPS at both outputs.. The results show that the S values are

We report a systematical investigation of the ac dielectrophoresis (DEP) force of the n-type gallium-nitride nanowires (GaN NWs) across patterned Ti / Au electrodes for various types

Dae-Jung Kim, Young-Moon Yu, Kwang-Jae Lee and Yong Dae Choi ∗ Department of Optical &amp; Electronic Physics Mokwon University, Daejon 305-764. Ji-Hyun Moon, Seon-Hyang You