We demonstrate identification of position, material, orientation, and shape of objects imaged by a ⁸⁵Rb atomic magnetometer performing electromagnetic induction imaging supported by machine learning. Machine learning maximizes the information extracted from the images created by the magnetometer, demonstrating the use of hidden data. Localization 2.6 times better than the spatial resolution of the imaging system and successful classification up to 97% are obtained. This circumvents the need of solving the inverse problem and demonstrates the extension of machine learning to diffusive systems, such as low-frequency electrodynamics in media. Automated collection of task-relevant information from quantum-based electromagnetic imaging will have...
We show that a single atomic magnetometer in a magnetically unshielded environment can be used to p...
The sensitive detection of either static or radio frequency (RF) magnetic fields is essential to man...
Magnetic field imaging is a valuable resource for signal source localization and characterization. T...
We report on the development and performance of an electromagnetic induction imaging system based on...
We demonstrate electromagnetic induction imaging with an unshielded, portable radio frequency atomic...
We describe our research programme on the use of atomic magnetometers to detect conductive objects v...
<div>Datasets created with an atomic magnetometer performing magnetic induction imaging, and later a...
We report on the use of radio-frequency optical atomic magnetometers for magnetic induction tomograp...
We propose a new approach, based on optical atomic magnetometers and magnetic induction tomography (...
Electromagnetic induction imaging (EMI) allows mapping of the conductivity of target objects and, wh...
Progress in electromagnetic induction imaging with atomic magnetometers has brought its domain to th...
Over recent years the sensitivity of alkali-metal vapour magnetometers has been demonstrated to surp...
We explore the capabilities of the radio-frequency atomic magnetometers in the non-destructive detec...
We demonstrate through-skin electromagnetic induction imaging of pilot-holes in an aluminum block co...
We present the results of an edge detection algorithm applied on Electromagnetic Induction Imaging p...
We show that a single atomic magnetometer in a magnetically unshielded environment can be used to p...
The sensitive detection of either static or radio frequency (RF) magnetic fields is essential to man...
Magnetic field imaging is a valuable resource for signal source localization and characterization. T...
We report on the development and performance of an electromagnetic induction imaging system based on...
We demonstrate electromagnetic induction imaging with an unshielded, portable radio frequency atomic...
We describe our research programme on the use of atomic magnetometers to detect conductive objects v...
<div>Datasets created with an atomic magnetometer performing magnetic induction imaging, and later a...
We report on the use of radio-frequency optical atomic magnetometers for magnetic induction tomograp...
We propose a new approach, based on optical atomic magnetometers and magnetic induction tomography (...
Electromagnetic induction imaging (EMI) allows mapping of the conductivity of target objects and, wh...
Progress in electromagnetic induction imaging with atomic magnetometers has brought its domain to th...
Over recent years the sensitivity of alkali-metal vapour magnetometers has been demonstrated to surp...
We explore the capabilities of the radio-frequency atomic magnetometers in the non-destructive detec...
We demonstrate through-skin electromagnetic induction imaging of pilot-holes in an aluminum block co...
We present the results of an edge detection algorithm applied on Electromagnetic Induction Imaging p...
We show that a single atomic magnetometer in a magnetically unshielded environment can be used to p...
The sensitive detection of either static or radio frequency (RF) magnetic fields is essential to man...
Magnetic field imaging is a valuable resource for signal source localization and characterization. T...