41:01
CCCC Reversible Computing Workshop - Introductory Session
Computing Research Association
29:04
Michael P. Frank: Fundamental Physics of Reversible Computing — An Introduction, Part 1
Michael P. Frank: Fundamental Physics of Reversible Computing — An Introduction, Part 2
23:38
Norman Margolus: Quantum Limits on Classical Computation
22:05
Karpur Shukla: Foundations of the Lindbladian Approach to Adiabatic and Reversible Computing
29:29
Ed Fredkin - Reversible Computing (Keynote from the CCC's Workshop on Reversible Computing)
22:30
Michael P. Frank: Device & Circuit Technologies for Reversible Computing–An Introduction
19:45
Sarah Frost Murphy: Quantum dot Cellular Automata: A Brief Introduction
18:47
Ralph Merkle: Molecular Mechanical Computing (via the CCC Workshop on Reversible Computing)
14:53
Joseph Friedman: Scalable Reversible Computing with Skyrmion Billiard Balls
29:05
Michael P Frank: Architectural, Algorithmic, and Systems Engineering Issues for Reversible Computing
18:20
Gregory Snider: It’s Time for Adiabatic Computing (from the CCC Reversible Computing Workshop)
24:45
Noboyuki Yoshikawa: Reversible Quantum – Flux-Parametron: Practical Superconductor Reversible Logic
20:01
Himanshu Thapliyal: Energy Recovery Computing for Low-Energy and Secure IoT Devices
20:35
Robert Wille: Design Automation for Reversible and Adiabatic Circuits
17:45
Jayson Lynch: Reversible Algorithms (from the CCC Reversible Computing Workshop)
20:48
Erik DeBenedictis: Quantum plus Classical Computation (from the CCC Reversible Computing Workshop)