We demonstrate a novel way to form and deplete a vapor-cell magneto-optic trap (MOT) using a reversible, solid-state alkali-metal source via an applied polarized voltage. Using ∼100 mW of electrical power, a trapped-atom number of 5 × 106 has been achieved, starting from near zero and the timescales of the MOT formation and depletion of ∼1 s. This fast, reversible, and low-power alkali-atom source is desirable in both tabletop and portable cold-atom systems. The core technology of this device should translate readily to other alkali and alkaline-earth elements that could find a wide range of uses in cold-atom systems and instruments
International audienceAlkali sources are used as getters, to coat thermionic emission electrodes and...
Alkali metals have played an important role in optical and atomic physics from the very beginning. T...
Low intensity white light was used to increase the loading rate of $^{87}$Rb atoms into a vapor cell...
We demonstrate a novel way to form and deplete a vapor-cell magneto-optic trap (MOT) using a reversi...
We investigate a solid-state reversible alkali-ion battery (AIB) capable of regulating the density o...
We investigate a solid-state reversible alkali-ion battery (AIB) capable of regulating the density o...
We present a versatile and compact electron beam driven source for alkali metal atoms, which can be ...
We present a versatile and compact electron beam driven source for alkali metal atoms, which can be ...
Alkali metals have played an important role in optical and atomic physics from the very beginning. T...
Laser cooling and trapping of heavy alkaline-earth element barium have been demonstrated for the fir...
Laser cooling and trapping of heavy alkaline-earth element barium have been demonstrated for the fir...
Laser cooling and trapping of heavy alkaline-earth element barium have been demonstrated for the fir...
International audienceAlkali sources are used as getters, to coat thermionic emission electrodes and...
Laser cooling and trapping of heavy alkaline-earth element barium have been demonstrated for the fir...
Laser cooling and trapping of heavy alkaline-earth element barium have been demonstrated for the fir...
International audienceAlkali sources are used as getters, to coat thermionic emission electrodes and...
Alkali metals have played an important role in optical and atomic physics from the very beginning. T...
Low intensity white light was used to increase the loading rate of $^{87}$Rb atoms into a vapor cell...
We demonstrate a novel way to form and deplete a vapor-cell magneto-optic trap (MOT) using a reversi...
We investigate a solid-state reversible alkali-ion battery (AIB) capable of regulating the density o...
We investigate a solid-state reversible alkali-ion battery (AIB) capable of regulating the density o...
We present a versatile and compact electron beam driven source for alkali metal atoms, which can be ...
We present a versatile and compact electron beam driven source for alkali metal atoms, which can be ...
Alkali metals have played an important role in optical and atomic physics from the very beginning. T...
Laser cooling and trapping of heavy alkaline-earth element barium have been demonstrated for the fir...
Laser cooling and trapping of heavy alkaline-earth element barium have been demonstrated for the fir...
Laser cooling and trapping of heavy alkaline-earth element barium have been demonstrated for the fir...
International audienceAlkali sources are used as getters, to coat thermionic emission electrodes and...
Laser cooling and trapping of heavy alkaline-earth element barium have been demonstrated for the fir...
Laser cooling and trapping of heavy alkaline-earth element barium have been demonstrated for the fir...
International audienceAlkali sources are used as getters, to coat thermionic emission electrodes and...
Alkali metals have played an important role in optical and atomic physics from the very beginning. T...
Low intensity white light was used to increase the loading rate of $^{87}$Rb atoms into a vapor cell...