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Bloch oscillations of a Bose-Einstein condensate in a cavity-induced optical lattice

机译:Bose-Einstein的Bloch振荡在腔诱导的光学晶格中凝结

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This article complements previous work on the nondestructive observation of Bloch oscillations of a Bose- Einstein condensate in an optical lattice formed inside a high-finesse optical cavity [H. Ke?ler et al., New J. Phys. 18, 102001 (2016)]. We present measurements showing that the observed Bloch frequency is independent of the atom number and hence the cooperative coupling strength, the intracavity lattice depth, and the detuning between the external pump light and the effective cavity resonance.We find that in agreement with theoretical predictions, despite the atom-cavity dynamics, the value of the Bloch frequency agrees with that expected in conventional optical lattices, where it solely depends on the sizes of the force and the lattice constant. We also show that Bloch oscillations are observed in a self-organized two-dimensional lattice, which is formed if, instead of axially pumping the cavity through one of its mirrors, the Bose-Einstein condensate is irradiated by an optical standing wave oriented perpendicularly with respect to the cavity axis. For this case, however, excessive decoherence prevents a meaningful quantitative assessment.
机译:本文重组以前关于在高智光学腔内形成的光学晶格中的Bose-Einstein冷凝物的非破坏性观察的工作[H. Ke?Ler等人。,新的J. phys。 18,102001(2016)]。我们提供了测量,显示观察到的Bloch频率与原子编号无关,因此合作耦合强度,腔内夹具深度和外部泵浦光之间的静脉和有效腔共振之间的静脉。我们发现与理论上的预测一致,尽管原子腔动力学,但是BLOCH频率的值与传统光学格子中的预期同意,在那里它仅取决于力和晶格常数的尺寸。我们还表明,在自组织的二维晶格中观察到Bloch振荡,其形成为代替轴向泵送腔体,而是通过垂直定向的光学驻距波照射Bose-Einstein冷凝物尊重腔轴。然而,对于这种情况,过度的干式阻止了有意义的定量评估。

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