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首页> 外文期刊>Journal of Modern Optics >The barriers to producing multiparticle superposition states in rotating Bose-Einstein condensates
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The barriers to producing multiparticle superposition states in rotating Bose-Einstein condensates

机译:旋转Bose-Einstein凝聚物中产生多粒子叠加态的障碍

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摘要

We study why it is quite so hard to make a superposition of super fluid flows in a Bose-Einstein condensate. To do this we initially investigate the quantum states of N atoms trapped in a 1D ring with a barrier at one position and a phase applied around it. We show how macroscopic superpositions can in principle be produced and investigate factors which affect the superposition. We then use the Bose-Hubbard model to study an array of Bose-Einstein condensates trapped in optical potentials and coupled to one another to form a ring. We derive analytic expressions for the quality of the superposition for this system, which agrees well with direct diagonalization of the Hamiltonian for relatively small numbers of atoms. We show that for macroscopic superpositions to be realized there are essentially three straightforward requirements, other than an absence of decoherence, which become harder to achieve as the system size increases. Firstly, the energies of the two distinct superfluid states must be sufficiently close. Secondly, coupling between the two states must be sufficiently strong, and thirdly, other states must be well separated from those participating in the superposition.
机译:我们研究了为什么要在玻色-爱因斯坦冷凝物中叠加超级流体非常困难。为此,我们首先调查陷于一维环中的N原子的量子态,该环在一个位置处具有势垒,并在其周围施加相。我们展示了原理上如何产生宏观叠加,并研究了影响叠加的因素。然后,我们使用Bose-Hubbard模型研究一系列被束缚在光势中并彼此耦合形成环的Bose-Einstein冷凝物。我们推导了该系统叠加质量的解析表达式,这与相对少量原子的哈密顿量的直接对角线化非常吻合。我们表明,要实现宏观叠加,除了缺少退相干性之外,本质上存在三个简单的要求,随着系统尺寸的增加,这些要求变得越来越难以实现。首先,两个不同的超流体状态的能量必须足够接近。其次,两个状态之间的耦合必须足够强,第三,其他状态必须与参与叠加的状态完全隔离。

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