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Mode structure and photon number correlations in squeezed quantum pulses - art. no. 053813

机译:压缩量子脉冲中的模结构和光子数相关-艺术没有。 053813

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摘要

The question of an efficient multimode description of optical pulses is studied. We show that a relatively very small number of nonmonochromatic modes can be sufficient for a complete quantum description of pulses with Gaussian quadrature statistics. For example, a three-mode description was enough to reproduce the experimental data of photon number correlations in optical solitons [S. Spalter, N. Korolkova, F. Konig, A. Sizmann, and G. Leuchs, Phys. Rev. Lett. 81, 786 (1998)]. This approach is very useful for a detailed understanding of squeezing properties of soliton pulses with the main potential for quantum communication with continuous variables. We show how homodyne detection and/or measurements of photon number correlations can be used to determine the quantum state of the multimode field. We also discuss a possible way of physical separation of the nonmonochromatic modes. [References: 35]
机译:研究了有效的光脉冲多模描述问题。我们表明,相对少量的非单色模式对于具有高斯正交统计量的脉冲的完整量子描述就足够了。例如,三模式描述足以重现光学孤子中光子数相关性的实验数据[S. Spalter,N。Korolkova,F。Konig,A。Sizmann,和G. Leuchs,物理学。牧师81,786(1998)]。该方法对于详细了解孤子脉冲的压缩特性(具有连续变量的量子通信的主要潜力)非常有用。我们展示了零差检测和/或光子数相关性的测量可如何用于确定多模场的量子态。我们还讨论了非单色模式物理分离的一种可能方法。 [参考:35]

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