双模纠缠光束的光子相减理论

Q2 Physics and Astronomy
O. Rosas‐Ortiz, K. Zelaya
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引用次数: 2

摘要

光子相减有助于产生光子量子技术应用中的非经典光状态。经过非常加速的发展,这项技术使按需获得单光子或光学猫成为可能。然而,它缺乏能够对生产油田进行精确预测的理论公式。基于双模SU(2)相干态产生的表示,我们引入了一个纠缠光束模型,该模型导致其中一个模式中光子的相减,条件是检测另一个模式下的任何光子。我们证明了光子相减不会从经典场产生非经典场。它还导出了输出字段的紧凑表达式,从中可以直接计算任何输入状态的条件概率。例子包括压缩真空和奇压缩态的分析。我们还表明,将光学猫注入分束器会在贝尔表示中产生纠缠态。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Theory of Photon Subtraction for Two-Mode Entangled Light Beams
Photon subtraction is useful to produce nonclassical states of light addressed to applications in photonic quantum technologies. After a very accelerated development, this technique makes possible obtaining either single photons or optical cats on demand. However, it lacks theoretical formulation enabling precise predictions for the produced fields. Based on the representation generated by the two-mode SU(2) coherent states, we introduce a model of entangled light beams leading to the subtraction of photons in one of the modes, conditioned to the detection of any photon in the other mode. We show that photon subtraction does not produce nonclassical fields from classical fields. It is also derived a compact expression for the output field from which the calculation of conditional probabilities is straightforward for any input state. Examples include the analysis of squeezed-vacuum and odd-squeezed states. We also show that injecting optical cats into a beam splitter gives rise to entangled states in the Bell representation.
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来源期刊
Quantum Reports
Quantum Reports Physics and Astronomy-Physics and Astronomy (miscellaneous)
CiteScore
3.30
自引率
0.00%
发文量
33
审稿时长
10 weeks
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