Javascript must be enabled to continue!
Superconducting Spintronics and Devices
View through CrossRef
This article reviews the current status of superconducting spintronics and devices, with particular emphasis on the critical issues and developments needed for their application to low-power quantum computing. It first provides an overview of conventional spintronics before discussing the rationale for superconducting spintronics. It then considers the proximity effects and Josephson junctions in superconductor-ferromagnet heterostructures, along with spin transport in the superconducting state. It also examines the issue of memory in superconducting spintronics, especially with respect to reading and writing magnetic data via superconducting states, and how to generate memory logic in such devices. Finally, it evaluates the potential application of superconductor-ferromagnetic insulator devices as thermoelectric systems in low-temperature electronic circuits.
Title: Superconducting Spintronics and Devices
Description:
This article reviews the current status of superconducting spintronics and devices, with particular emphasis on the critical issues and developments needed for their application to low-power quantum computing.
It first provides an overview of conventional spintronics before discussing the rationale for superconducting spintronics.
It then considers the proximity effects and Josephson junctions in superconductor-ferromagnet heterostructures, along with spin transport in the superconducting state.
It also examines the issue of memory in superconducting spintronics, especially with respect to reading and writing magnetic data via superconducting states, and how to generate memory logic in such devices.
Finally, it evaluates the potential application of superconductor-ferromagnetic insulator devices as thermoelectric systems in low-temperature electronic circuits.
Related Results
High Field Superconducting Magnets
High Field Superconducting Magnets
Abstract
Superconducting devices, which can carry huge currents and generate strong magnetic fields without losing energy, are improving at a tremendous pace. Thi...
Topological Superconductors and Majorana Fermions
Topological Superconductors and Majorana Fermions
This article discusses recent developments relating to the so-called topological superconductors (TSCs), which have a full pairing gap in the bulk and gapless surface states consis...
Introduction
Introduction
This chapter is an introduction to the concept of spin current, the detailed formulation of which is not simple by any means and is still a challenging undertaking. However, it is ...
18th Czech and Slovak Conference onMagnetism – CSMAG'25
18th Czech and Slovak Conference onMagnetism – CSMAG'25
The Czech and Slovak Conference on Magnetism (CSMAG) is a scientific meeting that honors a longstanding tradition initiated in Košice in 1960. Evolving from a regional gathering of...
Spin polarization in magnets
Spin polarization in magnets
This chapter explains how the exchange splitting between up- and down-spin bands in ferromagnets unexceptionally generates spin-polarized electronic states at the Fermi energy. The...
Introduction
Introduction
Creation, detection, and manipulation of spin degrees of freedom of electrons and nuclei, phenomena of spin relaxation, decoherence and dephasing, and processes of spin transfer be...
Spin Seebeck effect
Spin Seebeck effect
Chapter 18 This chapter discusses the spin Seebeck effect (SSE), which stands for the generation of a spin current, a flow of spinangular momentum, as a result of a temperature gra...
Implanted cardiac support devices
Implanted cardiac support devices
Mechanical circulatory support forms a crucial and expanding element of advanced heart failure management. Short-term assistance is delivered in emergency situations or where the u...

