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首页> 外文期刊>Physical Review, A >Symmetric and asymmetric discrimination of bosonic loss: Toy applications to biological samples and photodegradable materials
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Symmetric and asymmetric discrimination of bosonic loss: Toy applications to biological samples and photodegradable materials

机译:挥霍损失的对称和不对称辨别:玩具应用与生物样品和可光降光的材料

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We consider quantum discrimination of bosonic loss based on both symmetric and asymmetric hypothesis testing. In both approaches, an entangled resource is able to outperform any classical strategy based on coherent-state transmitters in the regime of low photon numbers. In the symmetric case, we then consider the low-energy detection of bacterial growth in culture media. Assuming an exponential growth law for the bacterial concentration and the Beer-Lambert law for the optical transmissivity of the sample, we find that the use of entanglement allows one to achieve a much faster detection of growth with respect to the use of coherent states. This performance is also studied by assuming an exponential photo degradable model, where the concentration is reduced by increasing the number of photons irradiated over the sample. This investigation is then extended to the readout of classical information from suitably designed photodegradable optical memories.
机译:我们考虑基于对称和不对称假设检测的血清损失量子辨别。 在这两种方法中,纠缠的资源能够以低光子数的制度基于相干状态发射器来胜过任何经典策略。 在对称情况下,我们考虑培养基中细菌生长的低能量检测。 假设细菌浓度的指数增长法和用于样品的光学透射率的啤酒 - 兰伯特定律,我们发现纠缠的使用允许人们在使用相干状态的使用方面实现更快地检测。 还通过假设指数照片可降解模型来研究这种性能,其中通过增加样品上照射的光子的数量来降低浓度。 然后将该研究扩展到从适当设计的可光降解的光学存储器的经典信息的读出。

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