DocumentCode :
1157846
Title :
New complementary logic circuits using coupled open quantum systems
Author :
Katayama, Yasunao
Author_Institution :
IBM Res., Tokyo Res. Lab., Kanagawa, Japan
Volume :
4
Issue :
5
fYear :
2005
Firstpage :
527
Lastpage :
532
Abstract :
This paper present new complementary logic circuits that exploit an intrinsic bistability in nanoscale coupled open quantum systems such as wells and wires. When operated with a multiple-phase split-level clocking scheme, the device can latch a binary digit while meeting gain, tolerance, and I/O decoupling requirements at the same time, which was difficult with conventional back-to-back negative differential resistance devices. This same structure in a dual-rail configuration can function as a complete set of classical logic circuits by changing only the connections of the input signals. When these circuits are combined to form a sequential circuit, low power operation is expected, thanks to better voltage scaling, a zero-standby-power equalized state, and efficient charge recycling.
Keywords :
nanoelectronics; quantum well devices; semiconductor devices; semiconductor quantum wells; semiconductor quantum wires; sequential circuits; back-to-back negative differential resistance devices; binary digit; charge recycling; classical logic circuits; complementary logic circuits; dual-rail configuration; input-output decoupling; intrinsic bistability; multiple-phase split-level clocking scheme; nanoscale coupled open quantum systems; nanotechnology; quantum wells; quantum wires; semiconductor devices; sequential circuit; tolerance; voltage scaling; zero-standby-power equalized state; Clocks; Coupling circuits; Electrons; Energy states; Logic circuits; Potential well; Quantum computing; Semiconductor diodes; Tunneling; Wires; Nanotechnology; quantum wells; semiconductor devices;
fLanguage :
English
Journal_Title :
Nanotechnology, IEEE Transactions on
Publisher :
ieee
ISSN :
1536-125X
Type :
jour
DOI :
10.1109/TNANO.2005.851403
Filename :
1504709
Link To Document :
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