Superconducting quantum interference device (SQUID) is a sensitive detector of magnetic flux signals. Up to now, the main application of SQUIDs has been measurements of magnetic flux signals in the frequency range from near DC to several MHz. Recently, cryogenic low-noise radio-frequency (RF) amplifiers based on DC SQUID are under development aiming to detect RF signals with sensitivity approaching quantum limit. In this paper, we review the recent progress of cryogenic low-noise RF amplifiers based on SQUID technology. © 2014 Korea Institute of Applied Superconductivity and Cryogenics. All rights reserved11Nscopuskc
The goal of this studies is to use dc Squids as low noise radiofrequency amplifier (Tn ≈1K) in the f...
The goal of this studies is to use dc Squids as low noise radiofrequency amplifier (Tn ≈1K) in the f...
The dc Superconducting Quantum Interference Device (dc-SQUID) is one of the most sensitive magnetic ...
Radio-frequency (RF) amplifiers based on direct current (DC) superconducting quantum interference de...
This report summarizes the research performed on the LDRD project 02-ERD-071 to develop a quantum-li...
In the experiments for dark-matter QCD-axion searches, very weak microwave signals from a low-temper...
Abstract—We have developed a novel family of low-noise superconducting quantum interference devices ...
This thesis describes the development, fabrication, performance and applications of liquid nitrogen ...
The superconducting quantum interference device (SQUID) is one of the important applications of high...
This thesis describes the development of low Tc superconducting quantum interference devices (SQUIDs...
Superconducting QUantum Interference Devices (SQUIDs) have been used for more than a decade for the ...
This thesis describes the development, fabrication, performance and applications of liquid nitrogen ...
We have fabricated and measured optimized SQUID sensors (superconducting quantum interference device...
In the physical implementation of modern superconducting quantum computing systems, microwaves play ...
We have fabricated and measured optimized SQUID sensors (superconducting quantum interference device...
The goal of this studies is to use dc Squids as low noise radiofrequency amplifier (Tn ≈1K) in the f...
The goal of this studies is to use dc Squids as low noise radiofrequency amplifier (Tn ≈1K) in the f...
The dc Superconducting Quantum Interference Device (dc-SQUID) is one of the most sensitive magnetic ...
Radio-frequency (RF) amplifiers based on direct current (DC) superconducting quantum interference de...
This report summarizes the research performed on the LDRD project 02-ERD-071 to develop a quantum-li...
In the experiments for dark-matter QCD-axion searches, very weak microwave signals from a low-temper...
Abstract—We have developed a novel family of low-noise superconducting quantum interference devices ...
This thesis describes the development, fabrication, performance and applications of liquid nitrogen ...
The superconducting quantum interference device (SQUID) is one of the important applications of high...
This thesis describes the development of low Tc superconducting quantum interference devices (SQUIDs...
Superconducting QUantum Interference Devices (SQUIDs) have been used for more than a decade for the ...
This thesis describes the development, fabrication, performance and applications of liquid nitrogen ...
We have fabricated and measured optimized SQUID sensors (superconducting quantum interference device...
In the physical implementation of modern superconducting quantum computing systems, microwaves play ...
We have fabricated and measured optimized SQUID sensors (superconducting quantum interference device...
The goal of this studies is to use dc Squids as low noise radiofrequency amplifier (Tn ≈1K) in the f...
The goal of this studies is to use dc Squids as low noise radiofrequency amplifier (Tn ≈1K) in the f...
The dc Superconducting Quantum Interference Device (dc-SQUID) is one of the most sensitive magnetic ...