We present here the first evidence of photodesorption induced by low-intensity non-resonant light from an yttrium thin foil, which works as a neutralizer for Rb and Fr ions beam. Neutral atoms are suddenly ejected from the metal surface in a pulsed regime upon illumination with a broadband flash light and then released in the free volume of a pyrex cells. Here atoms are captured by a Magneto-Optical Trap (MOT), which is effectively loaded by the photodesorption. Loading times of the order of the flash rise time are measured. Desorption is also obtained in the continuous regime, by exploiting CW visible illumination of the metallic neutralizer surface. We demonstrate that at lower CW light intensities vacuum conditions are not perturbed by t...
Controlled atomic desorption from organic Poly-DiMethylSiloxane coating is demonstrated for improvin...
We demonstrate a novel dual color magneto-optical trap (MOT), which uses two sets of overlapping las...
Low intensity white light was used to increase the loading rate of $^{87}$Rb atoms into a vapor cell...
We present here the first evidence of photodesorption induced by low-intensity non-resonant light fr...
We show that light-induced atom desorption (LIAD) can be used as a flexible atomic source for large ...
In order to increase the efficiency of magneto-optical traps, yielding a greater number of trapped a...
We have obtained fast loading of a rubidium magneto-optical trap and very high collection efficiency...
We present in this paper recent results on Light - Induced Atom Desorption (LIAD) in sealed and open...
A magneto-optical trap for francium radioactive atoms has been set up at the Istituto Nazionale di F...
Controlled atomic desorption from organic Poly-DiMethylSiloxane coating is demonstrated for improvin...
We have studied magneto-optical traps (MOTs) for efficient on-line trapping of radioactive atoms. A...
The efficiency of photodesorption of Rb atoms previously collected on polymer organic film...
The goal of our experiment is to collect alkali atoms in a magneto-optical trap (MOT) for high-pre...
In this work we present the building and characterization of a Magneto-Optical Trap (from now on nam...
We report the first experimental evidence of nonthermal light induced atomic desorption (LIAD) from ...
Controlled atomic desorption from organic Poly-DiMethylSiloxane coating is demonstrated for improvin...
We demonstrate a novel dual color magneto-optical trap (MOT), which uses two sets of overlapping las...
Low intensity white light was used to increase the loading rate of $^{87}$Rb atoms into a vapor cell...
We present here the first evidence of photodesorption induced by low-intensity non-resonant light fr...
We show that light-induced atom desorption (LIAD) can be used as a flexible atomic source for large ...
In order to increase the efficiency of magneto-optical traps, yielding a greater number of trapped a...
We have obtained fast loading of a rubidium magneto-optical trap and very high collection efficiency...
We present in this paper recent results on Light - Induced Atom Desorption (LIAD) in sealed and open...
A magneto-optical trap for francium radioactive atoms has been set up at the Istituto Nazionale di F...
Controlled atomic desorption from organic Poly-DiMethylSiloxane coating is demonstrated for improvin...
We have studied magneto-optical traps (MOTs) for efficient on-line trapping of radioactive atoms. A...
The efficiency of photodesorption of Rb atoms previously collected on polymer organic film...
The goal of our experiment is to collect alkali atoms in a magneto-optical trap (MOT) for high-pre...
In this work we present the building and characterization of a Magneto-Optical Trap (from now on nam...
We report the first experimental evidence of nonthermal light induced atomic desorption (LIAD) from ...
Controlled atomic desorption from organic Poly-DiMethylSiloxane coating is demonstrated for improvin...
We demonstrate a novel dual color magneto-optical trap (MOT), which uses two sets of overlapping las...
Low intensity white light was used to increase the loading rate of $^{87}$Rb atoms into a vapor cell...