We demonstrate a centimeter-scale optomechanical magnetometer based on a crystalline whispering-gallery-mode resonator. The large size of the resonator, with a magnetic-field integration volume of 0.45 cm3, allows high magnetic-field sensitivity to be achieved in the hertz-to-kilohertz frequency range. A peak sensitivity of 131 pT Hz−1/2 is reported, in a magnetically unshielded noncryogenic environment using optical power levels beneath 100 μW. Femtotesla-range sensitivity may be possible in future devices with the further optimization of laser noise and the physical structure of the resonator, allowing applications in high-performance magnetometry
International audienceRecent works [1, 2] presented an exploratory investigation of high sensitive m...
Introduction Whispering gallery mode (WGM) micro-resonators are remarkable optical devices whose sma...
A microscale, picotesla range, silicon-chip optical magnetometer. Earth-field, fiber coupled operati...
We demonstrate a centimeter-scale optomechanical magnetometer based on a crystalline whispering-gall...
A cavity optomechanical magnetometer is demonstrated. The magnetic-field-induced expansion of a magn...
A cavity optomechanical magnetometeroperating in the 100 pT range is reported. The device operates a...
Cavity optomechanical magnetic field sensors, constructed by coupling a magnetostrictive material to...
The dual-resonant enhancement of mechanical and optical response in cavity optomechanical magnetomet...
We achieved sensitivity of 30 pT/Hz and working bandwidth larger than 100 MHz, using cavity optomech...
We present a model of a cavity optomechanical magnetic field sensor based on a microtoroidal resonat...
Cavity Optomechanical magnetometry is realized by embedding the magnetostrictive material into the h...
Optomechanical magnetometers have been previously demonstrated to achieve sensitivities comparable t...
Cavity optomechanical magnetic field sensors, constructed by coupling a magnetostrictive material to...
The resonant enhancement of mechanical and optical interaction in optomechanical cavities enables th...
This paper addresses the feasibility of an optical vibrometer that is based on the shift of the opti...
International audienceRecent works [1, 2] presented an exploratory investigation of high sensitive m...
Introduction Whispering gallery mode (WGM) micro-resonators are remarkable optical devices whose sma...
A microscale, picotesla range, silicon-chip optical magnetometer. Earth-field, fiber coupled operati...
We demonstrate a centimeter-scale optomechanical magnetometer based on a crystalline whispering-gall...
A cavity optomechanical magnetometer is demonstrated. The magnetic-field-induced expansion of a magn...
A cavity optomechanical magnetometeroperating in the 100 pT range is reported. The device operates a...
Cavity optomechanical magnetic field sensors, constructed by coupling a magnetostrictive material to...
The dual-resonant enhancement of mechanical and optical response in cavity optomechanical magnetomet...
We achieved sensitivity of 30 pT/Hz and working bandwidth larger than 100 MHz, using cavity optomech...
We present a model of a cavity optomechanical magnetic field sensor based on a microtoroidal resonat...
Cavity Optomechanical magnetometry is realized by embedding the magnetostrictive material into the h...
Optomechanical magnetometers have been previously demonstrated to achieve sensitivities comparable t...
Cavity optomechanical magnetic field sensors, constructed by coupling a magnetostrictive material to...
The resonant enhancement of mechanical and optical interaction in optomechanical cavities enables th...
This paper addresses the feasibility of an optical vibrometer that is based on the shift of the opti...
International audienceRecent works [1, 2] presented an exploratory investigation of high sensitive m...
Introduction Whispering gallery mode (WGM) micro-resonators are remarkable optical devices whose sma...
A microscale, picotesla range, silicon-chip optical magnetometer. Earth-field, fiber coupled operati...