Institute of Electronic Structure and Laser, Foundation for Research and Technology-Hellas, GR-71110, Heraklion, Greece.
Phys Rev Lett. 2007 Aug 24;99(8):083001. doi: 10.1103/PhysRevLett.99.083001. Epub 2007 Aug 22.
We demonstrate a novel class of trapping potentials, time-averaged adiabatic potentials (TAAP), which allows the generation of a large variety of traps for quantum gases and matter-wave guides for atom interferometers. Examples include stacks of pancakes, rows of cigars, and multiple rings or sickles. The traps can be coupled through controllable tunneling barriers or merged altogether. We present analytical expressions for pancake-, cigar-, and ring-shaped traps. The ring geometry is of particular interest for guided matter-wave interferometry as it provides a perfectly smooth waveguide of widely tunable diameter and thus adjustable sensitivity of the interferometer. The flexibility of the TAAP would make possible the use of Bose-Einstein condensates as coherent matter waves in large-area atom interferometers.
我们展示了一类新的俘获势,即时间平均绝热势(TAAP),它可以产生用于量子气体的各种陷阱和原子干涉仪的物质波导。示例包括堆叠的薄饼、成排的雪茄和多个环或镰刀。这些陷阱可以通过可控的隧道势垒耦合或合并在一起。我们给出了薄饼形、雪茄形和环形陷阱的解析表达式。环形几何形状对于引导物质波干涉特别有趣,因为它提供了一个完全平滑的波导,其直径可调,因此干涉仪的灵敏度也可调。TAAP 的灵活性使得使用玻色-爱因斯坦凝聚体作为大面积原子干涉仪中的相干物质波成为可能。