We propose and demonstrate an all-optical approach to single-electron sensing using the optical transitions of a semiconductor quantum dot. The measured electric-field sensitivity of 5 ( V / m ) / √ Hz corresponds to detecting a single electron located 5 μ m from the quantum dot—nearly 10 times greater than the diffraction limited spot size of the excitation laser—in 1 s. The quantum-dot-based electrometer is more sensitive than other devices operating at a temperature of 4.2 K or higher and further offers suppressed backaction on the measured system
As electronic devices become extremely small, the charging energy associated by putting a single ele...
International audienceSemiconductor quantum dots (QDs) are solid-state artificial atoms which host s...
International audienceSemiconductor quantum dots (QDs) are solid-state artificial atoms which host s...
Properly designed colloidal semiconductor quantum dots (QDs) have already been shown to exhibit high...
Single-molecule spectroscopy has become a powerful method for using organic fluorescent molecules in...
Properly designed colloidal semiconductor quantum dots (QDs) have already been shown to exhibit high...
Properly designed colloidal semiconductor quantum dots (QDs) have already been shown to exhibit high...
We optimized the performance of quantum-confined Stark effect (QCSE)-based voltage nanosensors. A hi...
We optimized the performance of quantum-confined Stark effect (QCSE)-based voltage nanosensors. A hi...
We report optical experiments of a charge tunable, single nanowire quantum dot subject to an electri...
We report optical experiments of a charge tunable, single nanowire quantum dot subject to an electri...
We report optical experiments of a charge tunable, single nanowire quantum dot subject to an electri...
We report optical experiments of a charge tunable, single nanowire quantum dot subject to an electri...
We report optical experiments of a charge tunable, single nanowire quantum dot subject to an electri...
We report optical experiments of a charge tunable, single nanowire quantum dot subject to an electri...
As electronic devices become extremely small, the charging energy associated by putting a single ele...
International audienceSemiconductor quantum dots (QDs) are solid-state artificial atoms which host s...
International audienceSemiconductor quantum dots (QDs) are solid-state artificial atoms which host s...
Properly designed colloidal semiconductor quantum dots (QDs) have already been shown to exhibit high...
Single-molecule spectroscopy has become a powerful method for using organic fluorescent molecules in...
Properly designed colloidal semiconductor quantum dots (QDs) have already been shown to exhibit high...
Properly designed colloidal semiconductor quantum dots (QDs) have already been shown to exhibit high...
We optimized the performance of quantum-confined Stark effect (QCSE)-based voltage nanosensors. A hi...
We optimized the performance of quantum-confined Stark effect (QCSE)-based voltage nanosensors. A hi...
We report optical experiments of a charge tunable, single nanowire quantum dot subject to an electri...
We report optical experiments of a charge tunable, single nanowire quantum dot subject to an electri...
We report optical experiments of a charge tunable, single nanowire quantum dot subject to an electri...
We report optical experiments of a charge tunable, single nanowire quantum dot subject to an electri...
We report optical experiments of a charge tunable, single nanowire quantum dot subject to an electri...
We report optical experiments of a charge tunable, single nanowire quantum dot subject to an electri...
As electronic devices become extremely small, the charging energy associated by putting a single ele...
International audienceSemiconductor quantum dots (QDs) are solid-state artificial atoms which host s...
International audienceSemiconductor quantum dots (QDs) are solid-state artificial atoms which host s...