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首页> 外文期刊>Physical Review, A >Symmetry-broken momentum distributions induced by matter-wave diffraction during time-of-flight expansion of ultracold atoms
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Symmetry-broken momentum distributions induced by matter-wave diffraction during time-of-flight expansion of ultracold atoms

机译:超冷原子飞行时间膨胀过程中物质波衍射引起的对称破坏动量分布

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We study several effects which lead to symmetry-broken momentum distributions of quantum gases released from optical lattices. In particular, we demonstrate that the interaction within the first milliseconds of the time-of-flight expansion can strongly alter the measurement of the initial atomic momentum distribution. For bosonic mixtures in state-dependent lattices, interspecies scattering processes lead to a symmetry breaking in momentum space. The underlying mechanism is identified to be diffraction of the matter wave from the total density lattice, which gives rise to a time-dependent interaction potential. Our findings are of fundamental relevance for the interpretation of time-of-flight measurements and for the study of exotic quantum phases such as the twisted superfluid. Beyond that, the observed matter-wave diffraction can also be used as an interferometric probe. In addition, we report on diffraction from the state-dependent standing light field, which leads to the same symmetry-broken momentum distributions, even for single component condensates.
机译:我们研究了几种导致从光学晶格释放出的量子气体的对称破坏动量分布的效应。特别是,我们证明了飞行时间扩展的最初几毫秒内的相互作用可以极大地改变初始原子动量分布的度量。对于状态依赖晶格中的玻色混合物,种间散射过程导致动量空间对称性的破坏。识别出潜在的机理是物质波从总密度晶格中衍射出来,这引起了与时间有关的相互作用势。我们的发现对于解释飞行时间测量和研究扭曲的超流体等奇异量子相具有根本意义。除此之外,观察到的物质波衍射也可以用作干涉探针。此外,我们报告了状态依赖的站立光场发生的衍射,即使对于单组分冷凝物,也会导致相同的对称破坏动量分布。

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