Electromagnetic induction imaging (EMI) allows mapping of the conductivity of target objects and, when combined with appropriate algorithms, the generation of full 3D tomographic images. Despite its tremendous potential, and the wealth of possible applications, the use of EMI has essentially been limited to eddy current testing for monitoring of corrosion and welding in metallic structures. The present work reviews the factors hindering the progress of electromagnetic induction imaging and highlights how the use of atomic magnetometers overcame some of them, opening the path to real world applications of EMI. Perspectives for further developments are discussed
This work addresses the issue of imaging of corrosion under insulation in pipelines. We demonstrate ...
We demonstrate through-skin electromagnetic induction imaging of pilot-holes in an aluminum block co...
Magnetic induction tomography (MIT) is based on remotely excited eddy currents inside a measurement ...
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...
We propose a new approach, based on optical atomic magnetometers and magnetic induction tomography (...
We report on the use of radio-frequency optical atomic magnetometers for magnetic induction tomograp...
Magnetic Induction Tomography (MIT) is a contactless non-invasive imaging technique that interested ...
Progress in electromagnetic induction imaging with atomic magnetometers has brought its domain to th...
We explore the capabilities of the radio-frequency atomic magnetometers in the non-destructive detec...
Eddy currents induced in electrically conductive objects can be used to locate metallic objects as w...
An electromagnetic induction system, suitable for 2D imaging of metallic samples of different electr...
This study is conducted to preliminary image the conductivity profile through the development of sma...
We demonstrate identification of position, material, orientation, and shape of objects imaged by a ⁸...
This work addresses the issue of imaging of corrosion under insulation in pipelines. We demonstrate ...
We demonstrate through-skin electromagnetic induction imaging of pilot-holes in an aluminum block co...
Magnetic induction tomography (MIT) is based on remotely excited eddy currents inside a measurement ...
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...
We propose a new approach, based on optical atomic magnetometers and magnetic induction tomography (...
We report on the use of radio-frequency optical atomic magnetometers for magnetic induction tomograp...
Magnetic Induction Tomography (MIT) is a contactless non-invasive imaging technique that interested ...
Progress in electromagnetic induction imaging with atomic magnetometers has brought its domain to th...
We explore the capabilities of the radio-frequency atomic magnetometers in the non-destructive detec...
Eddy currents induced in electrically conductive objects can be used to locate metallic objects as w...
An electromagnetic induction system, suitable for 2D imaging of metallic samples of different electr...
This study is conducted to preliminary image the conductivity profile through the development of sma...
We demonstrate identification of position, material, orientation, and shape of objects imaged by a ⁸...
This work addresses the issue of imaging of corrosion under insulation in pipelines. We demonstrate ...
We demonstrate through-skin electromagnetic induction imaging of pilot-holes in an aluminum block co...
Magnetic induction tomography (MIT) is based on remotely excited eddy currents inside a measurement ...