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» Design of Reversible Quantum Ternary Comparator Circuits
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GECCO
2003
Springer
121views Optimization» more  GECCO 2003»
13 years 10 months ago
Evolving Hogg's Quantum Algorithm Using Linear-Tree GP
Intermediate measurements in quantum circuits compare to conditional branchings in programming languages. Due to this, quantum circuits have a natural linear-tree structure. In thi...
André Leier, Wolfgang Banzhaf
DAC
2010
ACM
13 years 8 months ago
Reducing the number of lines in reversible circuits
Reversible logic became a promising alternative to traditional circuits because of its applications e.g. in low-power design and quantum computation. As a result, design of revers...
Robert Wille, Mathias Soeken, Rolf Drechsler
ASYNC
1997
IEEE
123views Hardware» more  ASYNC 1997»
13 years 9 months ago
On the Realisation of Delay-Insensitive Asynchronous Circuits with CMOS Ternary Logic
The realisation of Delay-Insensitive (DI) asynchronous circuits with a CMOS ternary logic is described in this paper. The main advantage of temary logic is the easy realisation of...
Riccardo Mariani, Roberto Roncella, Roberto Salett...
ISMVL
2008
IEEE
160views Hardware» more  ISMVL 2008»
13 years 11 months ago
Exact Synthesis of Elementary Quantum Gate Circuits for Reversible Functions with Don't Cares
Compact realizations of reversible logic functions are of interest in the design of quantum computers. In this paper we present an exact synthesis algorithm, based on Boolean Sati...
Daniel Große, Robert Wille, Gerhard W. Dueck...
DAC
2009
ACM
14 years 5 months ago
BDD-based synthesis of reversible logic for large functions
Reversible logic is the basis for several emerging technologies such as quantum computing, optical computing, or DNA computing and has further applications in domains like low-pow...
Robert Wille, Rolf Drechsler