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Weak measurements and quantum weak values for NOON states

机译:中午态的弱测量和量子弱价值

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Quantum weak values arise when the mean outcome of a weak measurement made on certain preselected and postselected quantum systems goes beyond the eigenvalue range for a quantum observable. Here, we propose how to determine quantum weak values for superpositions of states with a macroscopically or mesoscopically distinct mode number, that might be realized as two-mode Bose-Einstein condensate or photonic NOON states. Specifically, we give a model for a weak measurement of the Schwinger spin of a two-mode NOON state, for arbitrary N. The weak measurement arises from a nondestructive measurement of the two-mode occupation number difference, which for atomic NOON states might be realized via phase contrast imaging and the ac Stark effect using an optical meter prepared in a coherent state. The meter-system coupling results in an entangled cat-state. By subsequently evolving the system under the action of a nonlinear Josephson Hamiltonian, we show how postselection leads to quantum weak values, for arbitrary N. Since the weak measurement can be shown to be minimally invasive, the weak values provide a useful strategy for a Leggett-Garg test of N-scopic realism.
机译:当在某些预选和后选择的量子系统上进行的弱测量的平均结果超出了量子可观察到的特征值范围时,可能出现量子弱值。在这里,我们提出了如何确定具有宏观或介于思科不同的模式数的状态的叠加的量子弱值,这可能实现为两种模式Bose-Einstein冷凝物或光子中午状态。具体而言,我们给出了一个模型,用于弱测量两种模式中午状态的Schwinger旋转,对于任意n。弱测量来自两个模式占用号码差的非破坏性测量,这可能是原子的中午状态通过相位对比度成像实现,使用以相干状态制备的光学表来实现AC凝固效果。仪表系统耦合导致纠缠的猫状态。通过随后在非线性约瑟夫森汉密尔顿人的作用下发展系统,我们展示了后选择如何导致量子弱值,对于任意N.由于可以显示弱测量来最小的侵入性,因此弱价值为单身标记提供了一种有用的策略对N-SCOPIC现实主义的-GARG测试。

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