TY - JOUR
T1 - Spin-Related Superconducting Devices for Logic and Memory Applications
AU - He, Yu
AU - Li, Jiaxu
AU - Wang, Qiusha
AU - Matsuki, Hisakazu
AU - Yang, Guang
N1 - Publisher Copyright:
Copyright © 2023 Yu He et al.
PY - 2023/1
Y1 - 2023/1
N2 - Recently, there has been a surge of research in the field of superconducting spintronics, which combines superconductivity and magnetism. This emerging field is considered an alternative or complementary approach to traditional complementary metal-oxide semiconductor (CMOS) technology, offering high efficiency and effectiveness. Furthermore, the unique physical phenomena resulting from the interplay of these two competing properties have attracted increasing attention for their potential application in low-power quantum computing. In this review, we focus on the latest advancements in spin-related superconducting logic devices, specifically categorized as superconducting diodes based on their semiconductor counterparts. Additionally, given the ultralow operating temperatures required for these devices, we provide a comprehensive overview of compatible cryogenic memory technologies that incorporate spin-related principles. Finally, we address the key challenges currently hindering the practical implementation of spin-related superconducting electronics and offer insights and directions for future research in this field.
AB - Recently, there has been a surge of research in the field of superconducting spintronics, which combines superconductivity and magnetism. This emerging field is considered an alternative or complementary approach to traditional complementary metal-oxide semiconductor (CMOS) technology, offering high efficiency and effectiveness. Furthermore, the unique physical phenomena resulting from the interplay of these two competing properties have attracted increasing attention for their potential application in low-power quantum computing. In this review, we focus on the latest advancements in spin-related superconducting logic devices, specifically categorized as superconducting diodes based on their semiconductor counterparts. Additionally, given the ultralow operating temperatures required for these devices, we provide a comprehensive overview of compatible cryogenic memory technologies that incorporate spin-related principles. Finally, we address the key challenges currently hindering the practical implementation of spin-related superconducting electronics and offer insights and directions for future research in this field.
UR - https://www.scopus.com/pages/publications/85191280033
U2 - 10.34133/adi.0035
DO - 10.34133/adi.0035
M3 - 文献综述
AN - SCOPUS:85191280033
SN - 2767-9713
VL - 4
JO - Advanced Devices and Instrumentation
JF - Advanced Devices and Instrumentation
M1 - 0035
ER -