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Coherence and linewidth of a continuously pumped atom laser at finite temperature

机译:连续泵浦原子激光器在有限温度下的相干和线宽

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摘要

A continuous-wave atom laser formed by the outcoupling of atoms from a trapped Bose-Einstein condensate (BEC) potentially has a range of metrological applications. However, in order for the device to be truly continuous, a mechanism to replenish the atoms in the BEC is required. Here we calculate the temporal coherence properties of a continuously pumped atom laser beam outcoupled from a trapped Bose-Einstein condensate that is replenished from a reservoir at finite temperature. We find that the thermal fluctuations of the condensate can significantly decrease the temporal coherence of the output beam due to atomic interactions between the trapped BEC and the beam, and this can impact the metrological usefulness of the device. We demonstrate that a Raman outcoupling scheme imparting a sufficient momentum kick to the atom laser beam can lead to a significantly reduced linewidth.
机译:由捕获的玻色-爱因斯坦凝聚物(BEC)中的原子向外耦合形成的连续波原子激光器可能具有一系列的计量应用。但是,为了使该器件真正连续,需要一种机制来补充BEC中的原子。在这里,我们计算了从有限温度下从储层中补充的被俘获的玻色-爱因斯坦凝结物耦合出的连续泵浦原子激光束的时间相干特性。我们发现,由于被捕集的BEC和电子束之间的原子相互作用,冷凝液的热涨落会显着降低输出电子束的时间相干性,这会影响设备的计量学实用性。我们证明了将拉曼耦合方案赋予原子激光束足够的动量反冲可导致线宽显着降低。

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