Authors thank the Max-Planck Society and Deutsche Forschungsgemeinschaft, project “Fermi-surface topology and emergence of novel electronic states in strongly correlated electron systems,” for their financial support.Torque magnetometry is a key method to measure the magnetic anisotropy and quantum oscillations in metals. In order to resolve quantum oscillations in sub-millimeter sized samples, piezo-electric micro-cantilevers were introduced. In the case of strongly correlated metals with large Fermi surfaces and high cyclotron masses, magnetic torque resolving powers in excess of 104 are required at temperatures well below 1 K and magnetic fields beyond 10 T. Here, we present a new broadband read-out scheme for piezo-electric micro-cantil...
The development of Superconducting QUantum Interference Device (SQUID)-based magnetometer for two ap...
International audienceWe investigate the coupling efficiency of a localized magnetic moment placed a...
The Superconducting QUantum Interference Device (SQUID) susceptibility using a high-temperature radi...
Torque magnetometry is a key method to measure the magnetic anisotropy and quantum oscillations in m...
A novel setup for the measurement of magnetic fields external to certain antiferromagnets and genera...
We have used a new type of torque magnetometer: a piezoresistive cantilever. It detects the force an...
Localized detection of very small regularly placed magnetic systems, such as an array of tiny magnet...
We have designed and characterized a micro-SQUID with dispersive readout for use in low temperature ...
We have investigated the performance of piezoresistive cantilevers as magnetometers in the temperatu...
Magnetometer is one of the indispensable instruments utilized for the magnetic property characteriza...
A field-gradient torque magnetometer has been designed and constructed which measures the magnetic m...
Localized detection of very small regularly placed magnetic systems, such as an array of tiny magnet...
Magnetic resonance force microscopy (MRFM) is a powerful technique to detect a small number of spins...
A superconducting quantum interference device (SQUID) plays an important role in the development of ...
A superconducting quantum interference device (SQUID) plays an important role in the development of ...
The development of Superconducting QUantum Interference Device (SQUID)-based magnetometer for two ap...
International audienceWe investigate the coupling efficiency of a localized magnetic moment placed a...
The Superconducting QUantum Interference Device (SQUID) susceptibility using a high-temperature radi...
Torque magnetometry is a key method to measure the magnetic anisotropy and quantum oscillations in m...
A novel setup for the measurement of magnetic fields external to certain antiferromagnets and genera...
We have used a new type of torque magnetometer: a piezoresistive cantilever. It detects the force an...
Localized detection of very small regularly placed magnetic systems, such as an array of tiny magnet...
We have designed and characterized a micro-SQUID with dispersive readout for use in low temperature ...
We have investigated the performance of piezoresistive cantilevers as magnetometers in the temperatu...
Magnetometer is one of the indispensable instruments utilized for the magnetic property characteriza...
A field-gradient torque magnetometer has been designed and constructed which measures the magnetic m...
Localized detection of very small regularly placed magnetic systems, such as an array of tiny magnet...
Magnetic resonance force microscopy (MRFM) is a powerful technique to detect a small number of spins...
A superconducting quantum interference device (SQUID) plays an important role in the development of ...
A superconducting quantum interference device (SQUID) plays an important role in the development of ...
The development of Superconducting QUantum Interference Device (SQUID)-based magnetometer for two ap...
International audienceWe investigate the coupling efficiency of a localized magnetic moment placed a...
The Superconducting QUantum Interference Device (SQUID) susceptibility using a high-temperature radi...