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Tailored long range forces on polarizable particles by collective scattering of broadband radiation

机译:通过宽带辐射的集体散射在可极化粒子上量身定制的远程力

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Collective coherent light scattering by polarizable particles creates surprisingly strong, long range inter-particle forces originating from interference of the light scattered by different particles. While for monochromatic laser beams this interaction decays with the inverse distance, we show here that in general the effective interaction range and geometry can be controlled by the illumination bandwidth and geometry. As generic example we study the modifications inter-particle forces within a 1D chain of atoms trapped in the field of a confined optical nanofiber mode. For two particles we find short range attraction as well as optical binding at multiple distances. The range of stable distances shrinks with increasing light bandwidth and for a very large bandwidth field as e.g. blackbody radiation. We find a strongly attractive potential up to a critical distance beyond which the force gets repulsive. Including multiple scattering can even lead to the appearance of a stable configuration at a large distance. Such broadband scattering forces should be observable contributions in ultra-cold atom interferometers or atomic clocks setups. They could be studied in detail in 1D?geometries with ultra-cold atoms trapped along or within an optical nanofiber. Broadband radiation force interactions might also contribute in astrophysical scenarios as illuminated cold dust clouds.
机译:可极化粒子的集体相干光散射会产生出乎意料的强大,远距离的粒子间力,该力源自不同粒子散射的光的干涉。尽管对于单色激光束,这种相互作用随着距离的倒数而衰减,但我们在这里表明,通常,有效的相互作用范围和几何形状可以由照明带宽和几何形状控制。作为一般示例,我们研究在受限光学纳米纤维模式的场中捕获的一维原子链内的粒子间力的修正。对于两个粒子,我们发现近距离吸引以及在多个距离处的光学结合。稳定距离的范围随着光带宽的增加而缩小,并且对于很大的带宽场(例如,黑体辐射。我们发现,直至临界距离,力都具有排斥力,这是一个极具吸引力的潜力。包括多次散射甚至可以导致在远距离出现稳定的配置。在超冷原子干涉仪或原子钟设置中,这种宽带散射力应该是可观察到的贡献。可以在一维几何结构中对它们进行详细研究,其中超冷原子被束缚在光学纳米纤维的内部或内部。宽带辐射力相互作用还可能在天体物理场景中发挥作用,例如照亮的冷尘云。

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