We demonstrate the detection of magnetic particles carriedby water in a continuous flow using an atomic magnetic gradiometer.Studies on three types of magnetic particles are presented: a singlecobalt particle (diameter ~;150 mum, multi-domain), a suspension ofsuperparamagnetic magnetite particles (diameter ~;1 mum), andferromagnetic cobalt nanoparticles (diameter ~;10 nm, 120 kA/mmagnetization). Estimated detection limits are 20 mum diameter for asingle cobalt particle at a water flow rate 30 ml/min, 5x103 magnetiteparticles at 160 ml/min, and 50 pl for the specific ferromagnetic fluidat 130 ml/min. Possible applications of our method arediscussed
High permeability magnetic flux concentrators are used to enhance the sensitivity of an atomic magne...
Magnetic fluid or magnetic liquid are colloidal solutions of ultra-fine magnetic materials. Ferromag...
We demonstrate novel implementations of high-precision optical magnetometers which allow for spatial...
We demonstrate the detection of magnetic particles carried by water in a continuous flow using an at...
We show that a single atomic magnetometer in a magnetically unshielded environment can be used to p...
Over the last decades, the use of magnetic nanoparticles in research and commercial applications has...
We introduce a Magnetic Particle Imaging Susceptometer (MPIS) that uses a high- sensitivity atomic m...
Atomic magnetometry was presented as a technique suitable in magnetic resonance imaging (MRI) and ma...
We demonstrate that the quasistatic recording of the magnetic excitation function M(H) of superpara...
This is the author accepted manuscript. The final version is available from AIP Publishing via the D...
Magnetic resonance imaging (MRI) is a noninvasive andversatile methodology that has been applied in ...
We report the design and optimization of atomic magnetometer with a sensitivity of 80 fT/(Hz)1/2 for...
Some of the most sensitive methods of measuring magnetic fields utilize interactions of resonant lig...
Over recent years the sensitivity of alkali-metal vapour magnetometers has been demonstrated to surp...
The discrimination of immobilised superparamagnetic iron oxide nanoparticles (SPIONs) against SPIONs...
High permeability magnetic flux concentrators are used to enhance the sensitivity of an atomic magne...
Magnetic fluid or magnetic liquid are colloidal solutions of ultra-fine magnetic materials. Ferromag...
We demonstrate novel implementations of high-precision optical magnetometers which allow for spatial...
We demonstrate the detection of magnetic particles carried by water in a continuous flow using an at...
We show that a single atomic magnetometer in a magnetically unshielded environment can be used to p...
Over the last decades, the use of magnetic nanoparticles in research and commercial applications has...
We introduce a Magnetic Particle Imaging Susceptometer (MPIS) that uses a high- sensitivity atomic m...
Atomic magnetometry was presented as a technique suitable in magnetic resonance imaging (MRI) and ma...
We demonstrate that the quasistatic recording of the magnetic excitation function M(H) of superpara...
This is the author accepted manuscript. The final version is available from AIP Publishing via the D...
Magnetic resonance imaging (MRI) is a noninvasive andversatile methodology that has been applied in ...
We report the design and optimization of atomic magnetometer with a sensitivity of 80 fT/(Hz)1/2 for...
Some of the most sensitive methods of measuring magnetic fields utilize interactions of resonant lig...
Over recent years the sensitivity of alkali-metal vapour magnetometers has been demonstrated to surp...
The discrimination of immobilised superparamagnetic iron oxide nanoparticles (SPIONs) against SPIONs...
High permeability magnetic flux concentrators are used to enhance the sensitivity of an atomic magne...
Magnetic fluid or magnetic liquid are colloidal solutions of ultra-fine magnetic materials. Ferromag...
We demonstrate novel implementations of high-precision optical magnetometers which allow for spatial...