Planar lightwave circuit design for programmable complementary spectral keying encoder and decoder

Access Full Text

Planar lightwave circuit design for programmable complementary spectral keying encoder and decoder

For access to this article, please select a purchase option:

Buy article PDF
£12.50
(plus tax if applicable)
Buy Knowledge Pack
10 articles for £75.00
(plus taxes if applicable)

IET members benefit from discounts to all IET publications and free access to E&T Magazine. If you are an IET member, log in to your account and the discounts will automatically be applied.

Learn more about IET membership 

Recommend Title Publication to library

You must fill out fields marked with: *

Librarian details
Name:*
Email:*
Your details
Name:*
Email:*
Department:*
Why are you recommending this title?
Select reason:
 
 
 
 
 
Electronics Letters — Recommend this title to your library

Thank you

Your recommendation has been sent to your librarian.

A planar lightwave circuit design for implementing complementary spectral keying encoders and decoders is presented. The design uses only one arrayed-waveguide grating integrated with arrays of thermo-optic phase shifters and attenuators in a reflective structure. The result is a compact, low component count, programmable spectral keying switch that can implement a variety of spectral encoding/decoding functions.

Inspec keywords: optical communication equipment; code division multiple access; decoding; codecs; demultiplexing equipment

Other keywords: reflective structure; planar lightwave circuit design; spectral encoding; thermo-optic attenuators; arrayed-waveguide grating; programmable complementary spectral keying; spectral decoding; thermo-optic phase shifters

Subjects: Optical communication equipment; Multiplexing and switching in optical communication

References

    1. 1)
      • L. Adam , E. Simova , M. Kavehrad . (1997) Experiment on optical code-division-multiple-access switch system usingspectral amplitude encoding oflight-emitting diodes, Applications of Photonic Technology 2.
    2. 2)
      • J.A. Salehi , A.M. Weiner , J.P. Heritage . Coherent ultrashort light pulse code-division multiple access communicationsystems. J. Lightwave Technol. , 3 , 478 - 491
    3. 3)
      • C.F. Lam , D.T.K. Tong , M.C. Wu , E. Yablonovitch . Experimental demonstration of bipolar optical CDMA system using a balancedtransmitter and complementary spectral encoding. IEEE Photonics Technol. Lett. , 10 , 1504 - 1506
    4. 4)
      • R.A. Griffin , D.D. Sampson , D.A. Jackson . Coherence coding for photonic code-division multiple access communicationnetworks. J. Lightwave Technol. , 9 , 1862 - 1837
    5. 5)
      • D. Zaccarin , M. Kavehrad . Performance evaluation of optical CDMA systems using non-coherent detectionand bipolar codes. J. Lightwave Technol. , 1 , 96 - 105
    6. 6)
      • M. Kavehrad , D. Zaccarin . Optical code-division-multiplexed systems based on spectral encodingof noncoherent sources. J. Lightwave Technol. , 3 , 534 - 545
    7. 7)
      • L. Nguyen , T. Dennis , B. Aazhang , J.F. Young . Experimental demonstration of bipolar codes for optical spectral amplitudeCDMAcommunication. J. Lightwave Technol. , 9 , 1647 - 1653
    8. 8)
      • N. Karafolas , D. Uttamchandani . Optical CDMA system using bipolar codes and based on narrow passbandoptical filtering and direct detection. IEEE Photonics Technol. Lett. , 9 , 1072 - 1074
    9. 9)
      • T. Dennis , J.F. Young . Measurements of BER performance for bipolar encoding of an SFS. J. Lightwave Technol.
    10. 10)
      • H.P. Sardesai , C.C. Chang , A.M. Weiner . A femtosecond code-division multiple access communication system testbed. J. Lightwave Technol. , 11 , 1953 - 1964
    11. 11)
      • K. Oguchi . New notations based on the wavelength transfer matrix forfunctional analysis of wavelength circuits and new WDM networks using AWG-basedstar coupler with asymmetric characteristics. J. Lightwave Technol. , 6 , 1255 - 1263
http://iet.metastore.ingenta.com/content/journals/10.1049/el_19991263
Loading

Related content

content/journals/10.1049/el_19991263
pub_keyword,iet_inspecKeyword,pub_concept
6
6
Loading