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首页> 外文期刊>Physical Review, A >Nonclassical-state generation in macroscopic systems via hybrid discrete-continuous quantum measurements
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Nonclassical-state generation in macroscopic systems via hybrid discrete-continuous quantum measurements

机译:通过混合离散连续量子测量在宏观系统中生成非经典状态

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Nonclassical-state generation is an important component throughout experimental quantum science for quantum information applications and probing the fundamentals of physics. Here, we investigate permutations of quantum nondemolition quadrature measurements and single quanta addition or subtraction to prepare quantum superposition states in bosonic systems. The performance of each permutation is quantified and compared using several different nonclassicality criteria including Wigner negativity, nonclassical depth, and optimal fidelity with a coherent-state superposition. We also compare the performance of our protocol using squeezing instead of a quadrature measurement and find that the purification provided by the quadrature measurement can significantly increase the nonclassicality generated. Our approach is ideally suited for implementation in light-matter systems such as quantum optomechanics and atomic spin ensembles, and offers considerable robustness to initial thermal occupation.
机译:非经典态生成是整个实验量子科学中重要的组成部分,用于量子信息应用和探测物理学的基础。在这里,我们研究了量子非爆破正交测量的排列以及单量子加法或减法,以准备在玻色子系统中的量子叠加态。使用几种不同的非经典性标准(包括维格纳负性,非经典深度和具有相干态叠加的最佳保真度)对每个置换的性能进行量化和比较。我们还比较了使用压缩而不是正交测量的协议性能,发现通过正交测量提供的纯化可以显着增加生成的非经典性。我们的方法非常适合在光系统中实施,例如量子光力学和原子自旋集成,并且为初始热占据提供了相当强的鲁棒性。

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