International audiencePresented is a novel high sensitivity magnetometer allowing us to measure the magnetization reversal of about IO4 pB corresponding to a sensitivity of about IO-r6 emu. The detector is a niobium micro-bridge DC superconducting quantum interference device (SQUID), fabricated using electron-beam lithography. It is operational in the temperature range of O-7 K. Furthermore, we present a method to deposit on the SQUID loop a small number of Co clusters of about 2-5 nm in diameter. The first results obtained on these samples show that there is still a ferromagnetic coupling between the clusters and the magnetization reversal takes place by small avalanche
gnetic nano-sensors based on niobium dc SQUID (Superconducting Quantum Interference Device) for nano...
International audienceWe describe novel features of the induced magnetic anisotropy in Co nanocluste...
We report first measurements of the magnetization reversal of monodisperse 30 nm and 50 nm ferromagn...
International audiencePresented is a novel high sensitivity magnetometer allowing us to measure the ...
International audienceTechnological improvements require the understanding of dynamical magnetizatio...
International audienceAt the nanometric range, the superparamagnetic state has become a crucial issu...
We demonstrate the operation of low-noise nano superconducting quantum interference devices (SQUIDs)...
In this paper, Superconducting QUantum Interference Devices (SQUIDs) based on single layer Nb nanobr...
3 pages, 4 figures; conference proceeding: 1st Joint European Magnetic Symposia (JEMS'01), Grenoble ...
Recent interest in the development of small sized superconducting quantum interference devices (SQUI...
A high sensitive nano superconducting quantum interference device (nanoSQUID) operating as a magneti...
Magnetometer is one of the indispensable instruments utilized for the magnetic property characteriza...
9 pages, 10 figures; conference proceeding: 1st Joint European Magnetic Symposia (JEMS\'01), Grenobl...
AbstractMagnetic nano-sensors based on niobium dc SQUID (Superconducting Quantum Interference Device...
Abstract — Sub – micron sized superconducting quantum interference de-vices (SQUIDs) based on Niobiu...
gnetic nano-sensors based on niobium dc SQUID (Superconducting Quantum Interference Device) for nano...
International audienceWe describe novel features of the induced magnetic anisotropy in Co nanocluste...
We report first measurements of the magnetization reversal of monodisperse 30 nm and 50 nm ferromagn...
International audiencePresented is a novel high sensitivity magnetometer allowing us to measure the ...
International audienceTechnological improvements require the understanding of dynamical magnetizatio...
International audienceAt the nanometric range, the superparamagnetic state has become a crucial issu...
We demonstrate the operation of low-noise nano superconducting quantum interference devices (SQUIDs)...
In this paper, Superconducting QUantum Interference Devices (SQUIDs) based on single layer Nb nanobr...
3 pages, 4 figures; conference proceeding: 1st Joint European Magnetic Symposia (JEMS'01), Grenoble ...
Recent interest in the development of small sized superconducting quantum interference devices (SQUI...
A high sensitive nano superconducting quantum interference device (nanoSQUID) operating as a magneti...
Magnetometer is one of the indispensable instruments utilized for the magnetic property characteriza...
9 pages, 10 figures; conference proceeding: 1st Joint European Magnetic Symposia (JEMS\'01), Grenobl...
AbstractMagnetic nano-sensors based on niobium dc SQUID (Superconducting Quantum Interference Device...
Abstract — Sub – micron sized superconducting quantum interference de-vices (SQUIDs) based on Niobiu...
gnetic nano-sensors based on niobium dc SQUID (Superconducting Quantum Interference Device) for nano...
International audienceWe describe novel features of the induced magnetic anisotropy in Co nanocluste...
We report first measurements of the magnetization reversal of monodisperse 30 nm and 50 nm ferromagn...