论文标题
保姆的真实空间不平等现象
Real-space Bell inequalities in de Sitter
论文作者
论文摘要
贝尔 - 质质违规揭示了两个相互作用然后分离的粒子之间存在量子相关性。它们对量子场的概括对于研究许多现场理论设置(例如宇宙学密度波动)是必要的。在这项工作中,我们展示了如何在真实空间中的量子场构建铃铛操作员,而对于高斯州,我们根据场功率谱计算他们的期望值。然后,我们将形式主义应用于De-sitter时空的标量领域。我们发现,尽管在大尺度上具有相反波动的纠缠颗粒产生,但在真实空间中并未违反贝尔的不平等。原因是,当考虑在真实空间中两个不同位置的字段测量时,一个隐含地跟踪了其他每个位置的磁场配置,从而导致混合的两部分系统。这种“有效的破坏性”效应是造成量子特征的擦除的原因,并对我们揭示宇宙学结构的量子起源的能力提出了一些疑问。我们最终根据量子不和谐讨论这些结果。
Bell-inequality violations reveal the presence of quantum correlations between two particles that have interacted and then separated. Their generalisation to quantum fields is necessary to study a number of field-theoretic setups, such as cosmological density fluctuations. In this work, we show how Bell operators can be constructed for quantum fields in real space, and for Gaussian states we compute their expectation value in terms of the field power spectra. We then apply our formalism to a scalar field in de-Sitter space-time. We find that, in spite of the tremendous production of entangled particles with opposite wave momenta on large scales, Bell inequalities are not violated in real space. The reason is that, when considering measurements of a field at two distinct locations in real space, one implicitly traces over the configuration of the field at every other location, leading to a mixed bipartite system. This "effective decoherence" effect is responsible for the erasure of quantum features, and casts some doubts on our ability to reveal the quantum origin of cosmological structures. We finally discuss these results in the light of quantum discord.