Department of Physics, University of Illinois at Urbana-Champaign, Urbana, Illinois 61801-3080, USA.
Phys Rev Lett. 2010 Feb 12;104(6):063001. doi: 10.1103/PhysRevLett.104.063001. Epub 2010 Feb 10.
Ultracold dysprosium gases, with a magnetic moment 10 times that of alkali atoms and equal only to terbium as the most magnetic atom, are expected to exhibit a multitude of fascinating collisional dynamics and quantum dipolar phases, including quantum liquid crystal physics. We report the first laser cooling and trapping of half a billion Dy atoms using a repumper-free magneto-optical trap (MOT) and continuously loaded magnetic confinement, and we characterize the trap recycling dynamics for bosonic and fermionic isotopes. The first inelastic collision measurements in the few partial wave, 100 microK-1 mK, regime are made in a system possessing a submerged open electronic f shell. In addition, we observe unusual stripes of intra-MOT <10 microK sub-Doppler cooled atoms.
超冷镝气,其磁矩是碱金属原子的 10 倍,仅略小于磁矩最大的原子铽,预计会表现出多种迷人的碰撞动力学和量子偶极相,包括量子液晶物理。我们报告了首次使用无再泵浦的磁光阱(MOT)和连续加载的磁约束来冷却和捕获半十亿个镝原子,并对玻色和费米同位素的陷阱再循环动力学进行了表征。在一个具有淹没的开放电子 f 壳层的系统中,我们首次在几个分波、100 微开尔文到 1 毫开尔文的范围内进行了非弹性碰撞测量。此外,我们观察到 MOT 内的原子<10 微开尔文亚多普勒冷却的异常条纹。