In recent years, substantial progress has been made in developing a new generation of magnetoencephalography (MEG) with a spin-exchange relaxation free (SERF)-based atomic magnetometer (AM). An AM employs alkali atoms to detect weak magnetic fields. A compact AM array with high sensitivity is crucial to the design; however, most proposed compact AMs are potassium (K)-or rubidium (Rb)-based with single beam configurations. In the present study, a pump-probe two beam configuration with a Cesium (Cs)-basedAM(Cs-AM) is introduced to detect human neuronal magnetic fields. The length of the vapor cell is 4 mm, which can fully satisfy the need of designing a compact sensor array. Compared with state-of-the-art compact AMs, our newCs-AM has two adv...
Functional neuroimaging offers a means to understand brain function and dysfunction. Over decades, d...
Presently, among the most demanding applications for highly sensitive magnetometers are Magnetocardi...
In brain imaging, two complementary but technologically contradicting techniques are magnetoencephal...
We have developed a high sensitivity (<5 fTesla/{radical}Hz), fiber-optically coupled magnetomete...
Optically pumped atomic magnetometers operating in the spin exchange relaxation free (SERF) regime p...
Atomic magnetometer (AM) operated in a spin-exchange relaxation-free (SERF) regime features superior...
Advances in the field of quantum sensing mean that magnetic field sensors, operating at room tempera...
WOS:000455110500009International audienceIn this paper, we present the first proof of concept confir...
We have developed a novel, small-volume portable single-channel atomic biomagnetometer and have use...
Presented at the 2007 DAMOP meeting.We present a portable Rb cell atomic magnetometer suited for bio...
Magnetoencephalography (MEG) follows from the initial fundamental work of Cohen in 1968 and developm...
International audienceOptically pumped magnetometers (OPMs) are new, room-temperature alternatives t...
We demonstrated a scalar atomic magnetometer using a microfabricated Cs vapor cell. The atomic spin ...
Summary: We have developed high-critical-temperature radio-frequency Super conducting QUantum Interf...
In this paper, we present the magnetoencephalography system developed by the Institute of Applied Sc...
Functional neuroimaging offers a means to understand brain function and dysfunction. Over decades, d...
Presently, among the most demanding applications for highly sensitive magnetometers are Magnetocardi...
In brain imaging, two complementary but technologically contradicting techniques are magnetoencephal...
We have developed a high sensitivity (<5 fTesla/{radical}Hz), fiber-optically coupled magnetomete...
Optically pumped atomic magnetometers operating in the spin exchange relaxation free (SERF) regime p...
Atomic magnetometer (AM) operated in a spin-exchange relaxation-free (SERF) regime features superior...
Advances in the field of quantum sensing mean that magnetic field sensors, operating at room tempera...
WOS:000455110500009International audienceIn this paper, we present the first proof of concept confir...
We have developed a novel, small-volume portable single-channel atomic biomagnetometer and have use...
Presented at the 2007 DAMOP meeting.We present a portable Rb cell atomic magnetometer suited for bio...
Magnetoencephalography (MEG) follows from the initial fundamental work of Cohen in 1968 and developm...
International audienceOptically pumped magnetometers (OPMs) are new, room-temperature alternatives t...
We demonstrated a scalar atomic magnetometer using a microfabricated Cs vapor cell. The atomic spin ...
Summary: We have developed high-critical-temperature radio-frequency Super conducting QUantum Interf...
In this paper, we present the magnetoencephalography system developed by the Institute of Applied Sc...
Functional neuroimaging offers a means to understand brain function and dysfunction. Over decades, d...
Presently, among the most demanding applications for highly sensitive magnetometers are Magnetocardi...
In brain imaging, two complementary but technologically contradicting techniques are magnetoencephal...