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首页> 外文期刊>Journal of Physics, B. Atomic, Molecular and Optical Physics: An Institute of Physics Journal >Generating strong anti-bunching by interfering nonclassical and classical states of light
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Generating strong anti-bunching by interfering nonclassical and classical states of light

机译:通过干扰非分化和古典光线产生强烈的反结核

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摘要

In quantum optics, the second-order correlation function g((2))(tau) characterizes the photon statistics of a state of light and can be used to distinguish between its classical or quantum nature. In this article, we study a simple setup which offers the possibility to generate quantum states of light with very small g((2)) (0), a signature of strong anti-bunched light. This can be achieved by mixing on a beamsplitter a coherent state with a nonclassical state, such as a squeezed state, and even with a bunched state (g((2)) (0) > 1) such as a Schrodinger cat state. We elucidate the interference mechanism generating such strong anti-bunching and relate it to the unconventional photon blockade. We also detail how this effect can be applied to detect weakly squeezed states of light.
机译:在量子光学中,二阶相关函数G((2))(Tau)表征光状态的光子统计,并且可用于区分其经典或量子性质。 在本文中,我们研究了一个简单的设置,它能够使用非常小的G((2))(0),强大的防串光的签名来生成量子态的可能性。 这可以通过在横梁填点上混合具有非生物状态的连贯状态来实现,例如挤压状态,并且甚至具有束缚状态(G(2))(0)> 1),例如Schrodinger猫状态。 我们阐明产生这种强抗束缚的干扰机制,并将其与非传统的光子封锁相关联。 我们还详细介绍了如何应用这种效果来检测弱挤压光的光线。

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