首页> 外文会议>Quantum Electronics and Laser Science Conference, 1996. QELS '96., Summaries of Papers Presented at the >Quantum-nondemolition measurement of the photon number using cross-polarized soliton collisions in a fiber loop interferometer
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Quantum-nondemolition measurement of the photon number using cross-polarized soliton collisions in a fiber loop interferometer

机译:光纤环路干涉仪中使用交叉极化孤子碰撞进行的光子数的量子非爆破测量

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Summary form only given. Quantum-nondemolition (QND) measurements are those that do not disturb the quantum distribution of the variable being measured. It has been experimentally demonstrated that QND measurement of the photon number an be achieved by use of wavelength-multiplexed soliton collisions. A quantum analysis of the experiment has also been developed. It was found that the phase spreading of the probe as a result of self-phase modulation can contribute significant noises. In this paper we propose a new and better QND scheme using cross-polarized soliton collisions in a fiber loop interferometer. The scheme requires only a single wavelength laser source and can be fully fiber-integrated, and, most importantly, the noise caused by self-phase modulation is automatically suppressed by detection of the squeezed quadrature of the probe soliton.
机译:仅提供摘要表格。量子不爆破(QND)测量是那些不会干扰被测变量的量子分布的测量。实验已经证明,可以通过使用波长多路复用孤子碰撞来实现光子数的QND测量。还开发了实验的量子分析。已经发现,由于自相位调制而导致的探头相位扩展会产生很大的噪声。在本文中,我们提出了一种在光纤环路干涉仪中使用交叉极化孤子碰撞的新型更好的QND方案。该方案仅需要一个波长的激光源,并且可以完全集成光纤,最重要的是,通过检测探头孤子的压缩正交信号,可以自动抑制由自相位调制引起的噪声。

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