The predictions of Moore’s law are considered by experts to be valid until 2020 giving rise to “post-Moore’s” technologies afterwards. Energy efficiency is one of the major challenges in high-performance computing that should be answered. Superconductor digital technology is a promising post-Moore’s alternative for the development of supercomputers. In this paper, we consider operation principles of an energy-efficient superconductor logic and memory circuits with a short retrospective review of their evolution. We analyze their shortcomings in respect to computer circuits design. Possible ways of further research are outlined
The superconductor single-flux-quantum (SFQ) logic family has been recognized as a promising solutio...
A superconducting qubit (or quantum bit), which consists of a micrometer-sized loop with three Josep...
Here we use superconducting circuits as components for quantum computing and as model systems for no...
© 2017 Soloviev et al. The predictions of Moore's law are considered by experts to be valid until 20...
For four decades semiconductor electronics has followed Moore's law: with each generation of integra...
The integration of superconductive nanowire logic memories and energy efficient computing Josephson ...
Superconducting circuits provide one of the numerous current candidate routes for the realization of...
Superconducting circuits provide one of the numerous current candidate routes for the realization of...
Future computer systems promise to achieve an energy reduction of 100 or more times with memory desi...
session: High-performance, energy-efficient computing [I.1]International audienc
High performance computing is bottlenecked by increasing power demands and memory bandwidth, while s...
Reversible computing has been studied since Rolf Landauer advanced the argument that has come to be ...
Thesis: S.M. in Computer Science, Massachusetts Institute of Technology, Department of Electrical En...
Single-flux quantum logic (SFQ) circuits, in which a flux quantum is used as an information carrier ...
In this Review, memristors are examined from the frameworks of both von Neumann and neuromorphic com...
The superconductor single-flux-quantum (SFQ) logic family has been recognized as a promising solutio...
A superconducting qubit (or quantum bit), which consists of a micrometer-sized loop with three Josep...
Here we use superconducting circuits as components for quantum computing and as model systems for no...
© 2017 Soloviev et al. The predictions of Moore's law are considered by experts to be valid until 20...
For four decades semiconductor electronics has followed Moore's law: with each generation of integra...
The integration of superconductive nanowire logic memories and energy efficient computing Josephson ...
Superconducting circuits provide one of the numerous current candidate routes for the realization of...
Superconducting circuits provide one of the numerous current candidate routes for the realization of...
Future computer systems promise to achieve an energy reduction of 100 or more times with memory desi...
session: High-performance, energy-efficient computing [I.1]International audienc
High performance computing is bottlenecked by increasing power demands and memory bandwidth, while s...
Reversible computing has been studied since Rolf Landauer advanced the argument that has come to be ...
Thesis: S.M. in Computer Science, Massachusetts Institute of Technology, Department of Electrical En...
Single-flux quantum logic (SFQ) circuits, in which a flux quantum is used as an information carrier ...
In this Review, memristors are examined from the frameworks of both von Neumann and neuromorphic com...
The superconductor single-flux-quantum (SFQ) logic family has been recognized as a promising solutio...
A superconducting qubit (or quantum bit), which consists of a micrometer-sized loop with three Josep...
Here we use superconducting circuits as components for quantum computing and as model systems for no...