论文标题

通过第二次谐波生成挤压真空状态的两模式的破坏实验研究

Experimental study of decoherence of the two-mode squeezed vacuum state via second harmonic generation

论文作者

Li, Fu, Li, Tian, Agarwal, Girish S.

论文摘要

腐烂仍然是实施量子技术的最严重挑战之一。由于量子叠加态随着环境相互作用而导致的量子叠加状态随着时间的变化而变成经典混合物的结果。由于量子系统永远不会与环境完全隔离,因此在现实情况下无法避免变质。在理论上大部分研究了变形,因为它在量子技术中具有许多重要的含义,例如在量子信息处理,量子通信和量子计算的领域。在这里,我们报告了一种新的实验方案,该方案是关于通过其第二次谐波产生信号挤压真空状态的分解性的研究。我们的方案可以直接提取相敏感量子相关的变色$ \ langle \ hat {a} \ hat {b} \ rangle $在两个纠缠模式$ a $ a $和$ b $之间。这种相关性是两模式挤压状态的最重要特征。更重要的是,这是一项关于挤压真空状态的脱干作用的实验研究,很少研究。

Decoherence remains one of the most serious challenges to the implementation of quantum technology. It appears as a result of the transformation over time of a quantum superposition state into a classical mixture due to the quantum system interacting with the environment. Since quantum systems are never completely isolated from their environment, decoherence therefore cannot be avoided in realistic situations. Decoherence has been extensively studied, mostly theoretically, because it has many important implications in quantum technology, such as in the fields of quantum information processing, quantum communication and quantum computation. Here we report a novel experimental scheme on the study of decoherence of a two-mode squeezed vacuum state via its second harmonic generation signal. Our scheme can directly extract the decoherence of the phase-sensitive quantum correlation $\langle \hat{a}\hat{b}\rangle$ between two entangled modes $a$ and $b$. Such a correlation is the most important characteristic of a two-mode squeezed state. More importantly, this is an experimental study on the decoherence effect of a squeezed vacuum state, which has been rarely investigated.

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