Transactions on Computational Science XXIV: Special Issue on Reversible Computing(Lecture Notes in Computer Science)
Series: Lecture Notes in Computer Science
Adiabatic CMOS: Limits of Reversible Energy Recovery and First Steps for Design Automation.- Ultrafast All-Optical Reversible Peres and Feynman-Double Logic Gates with Silicon Microring Resonators.- Design of Reversible Adder-Subtractor and its Mapping in Optical Computing Domain.- Towards Reversible Basic Linear Algebra Subprograms: A Performance Study.- Synthesis and Optimization by Quantum Circ
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Adiabatic CMOS: Limits of Reversible Energy Recovery and First Steps for Design Automation.- Ultrafast All-Optical Reversible Peres and Feynman-Double Logic Gates with Silicon Microring Resonators.- Design of Reversible Adder-Subtractor and its Mapping in Optical Computing Domain.- Towards Reversible Basic Linear Algebra Subprograms: A Performance Study.- Synthesis and Optimization by Quantum Circuit Description Language.- An Approach to Reversible Logic Synthesis Using Input and Output Permutations.- Synthesis of Reversible Circuits Based on EXORs of Products of EXORs.- Improved Cube List Based Cube Pairing Approach for Synthesis of ESOP Based Reversible Logic.
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