DSFTA, University of Siena and INFN - PI, via Roma 56, 53100, Siena, Italy.
Department of Physics and Earth Sciences, University of Ferrara and INFN, via Saragat 1, 44122, Ferrara, Italy.
Sci Rep. 2017 Jun 23;7(1):4207. doi: 10.1038/s41598-017-04397-y.
Controlled atomic desorption from organic Poly-DiMethylSiloxane coating is demonstrated for improving the loading efficiency of Fr magneto-optical traps. A three times increase in the cold atoms population is obtained with contact-less pulsed light-induced desorption, applied to different isotopes, either bosonic or fermionic, of Francium. A six times increase of Fr population is obtained with a desorption mechanism based on direct charge transfer from a triboelectric probe to the adatom-organic coating complex. Our findings provide new insight on the microscopic mechanisms of atomic desorption from organic coatings. Our results, obtained at room temperature so as to preserve ideal vacuum conditions, represent concrete alternatives, independent from the atomic species in use, for high-efficiency laser cooling in critical conditions.
从有机聚二甲基硅氧烷涂层中控制原子解吸,以提高 Fr 磁光阱的装载效率。通过接触式脉冲光诱导解吸,对不同同位素的钫原子(无论是玻色子还是费米子)进行实验,得到了三倍的冷原子数的增加。通过基于从摩擦电探针到吸附原子-有机涂层复合物的直接电荷转移的解吸机制,Fr 原子的数量增加了六倍。我们的发现为从有机涂层中原子解吸的微观机制提供了新的见解。我们的结果是在室温下获得的,以保持理想的真空条件,为在关键条件下高效激光冷却提供了具体的替代方案,与使用的原子种类无关。