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Limits Of Quantum Information In Weak Interaction Processes Of Hyperons

机译:超谐波相互作用过程中量子信息的限制

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We analyze the achievable limits of the quantum information processing of the weak interaction revealed by hyperons with spin. We find that the weak decay process corresponds to an interferometric device with a fixed visibility and fixed phase difference for each hyperon. Nature chooses rather low visibilities expressing a preference to parity conserving or violating processes (except for the decay Σ+→ p π0). The decay process can be considered as an open quantum channel that carries the information of the hyperon spin to the angular distribution of the momentum of the daughter particles. We find a simple geometrical information theoretic interpretation of this process: two quantization axes are chosen spontaneously with probabilities where α is proportional to the visibility times the real part of the phase shift. Differently stated, the weak interaction process corresponds to spin measurements with an imperfect Stern-Gerlach apparatus. Equipped with this information theoretic insight we show how entanglement can be measured in these systems and why Bell’s nonlocality (in contradiction to common misconception in literature) cannot be revealed in hyperon decays. Last but not least we study under which circumstances contextuality can be revealed.
机译:我们分析了通过旋转超声透露的弱相互作用的量子信息处理的可实现限制。我们发现弱衰变过程对应于具有固定的可见性和每个超谐振的固定的可视性和固定相位差的干涉设备。自然选择相当低的可见性,表达偏心节省或违规过程的偏好(除了衰减σ + →pπ 0 )。衰变过程可以被认为是开放量子信道,其携带超谐波的信息,以旋转到子颗粒的动量的角度分布。我们发现一个简单的几何信息理论上的理论解释这个过程:两个量化轴与概率自发选择,其中α与相移的真实部分的可见性成比例。不同于说明,弱相互作用过程对应于具有不完全斯特纳 - Gerlach装置的自旋测量。配备了这些信息理论洞察力,我们展示了如何在这些系统中测量纠缠,为什么在超谐振中不能揭示贝尔的非识别(在文献中的常见误解中)。最后但并非最不重要的是,我们在哪个情况下可以揭示环境。

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