DocumentCode
2800805
Title
Eliminating wire crossings for molecular quantum-dot cellular automata implementation
Author
Chaudhary, Amitabh ; Chen, Danny Z. ; Hu, Xiaobo Sharon ; Whitton, Kevin ; Niemier, Michael ; Ravichandran, Ramprasad
Author_Institution
Dept. of Comp. Sci. & Eng., Notre Dame Univ., IN, USA
fYear
2005
fDate
6-10 Nov. 2005
Firstpage
565
Lastpage
571
Abstract
When exploring computing elements made from technologies other than CMOS, it is imperative to investigate the effects of physical implementation constraints. This paper focuses on molecular quantum-dot cellular automata circuits. For these circuits, it is very difficult for chemists to fabricate wire crossings (at least in the near future). A novel technique is introduced to remove wire crossings in a given circuit to facilitate the self assembly of real circuits - thus providing meaningful and functional design targets for both physical and computer scientists. The technique eliminates all wire crossings with minimal logic gate/node duplications. Experimental results based on existing QCA circuits and other benchmarks are quite encouraging, and suggest that further investigation is needed.
Keywords
cellular automata; integrated circuit design; molecular electronics; quantum dots; self-assembly; cellular automata implementation; logic gate/node duplication; molecular quantum-dot cellular automata circuit; self assembly; wire crossing elimination; Binary decision diagrams; CMOS technology; Chemical technology; Circuits; Logic devices; Logic gates; Physics computing; Quantum cellular automata; Quantum dots; Wire;
fLanguage
English
Publisher
ieee
Conference_Titel
Computer-Aided Design, 2005. ICCAD-2005. IEEE/ACM International Conference on
Print_ISBN
0-7803-9254-X
Type
conf
DOI
10.1109/ICCAD.2005.1560130
Filename
1560130
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