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首页> 外文期刊>Journal of Physics, B. Atomic, Molecular and Optical Physics: An Institute of Physics Journal >Quantum enhancement of N-photon phase sensitivity by interferometric addition of down-converted photon pairs to weak coherent light
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Quantum enhancement of N-photon phase sensitivity by interferometric addition of down-converted photon pairs to weak coherent light

机译:通过将下转换的光子对干涉相加到弱相干光上,量子增强N光子相位灵敏度

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摘要

It is shown that the addition of down-converted photon pairs to coherent laser light enhances the N-photon phase sensitivity due to the quantum interference between components of the same total photon number. Since most of the photons originate from the coherent laser light, this method of obtaining non-classical N-photon states is much more efficient than methods based entirely on parametrically down-converted photons. Specifically, it is possible to achieve an optimal phase sensitivity of about delta phi(2) = 1/N-3/2, equal to the geometric mean of the standard quantum limit and the Heisenberg limit, when the average number of down-converted photons contributing to the N-photon state approaches root N/2.
机译:结果表明,由于相同总光子数的分量之间的量子干扰,将下变频光子对添加到相干激光可以增强N光子相位灵敏度。由于大多数光子都来自相干激光,因此这种获得非经典N光子状态的方法比完全基于参数下转换的光子的方法要有效得多。具体来说,当下转换的平均次数达到约phiphi(2)= 1 / N-3 / 2时,可以达到最佳相位灵敏度,该灵敏度等于标准量子极限和海森堡极限的几何平均值贡献于N光子状态的光子接近根N / 2。

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