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首页> 外文期刊>Progress of Theoretical Physics >Quantum probabilities and violation of CHSH-inequality from classical random signals and threshold type detection scheme
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Quantum probabilities and violation of CHSH-inequality from classical random signals and threshold type detection scheme

机译:经典随机信号和阈值类型检测方案的量子概率和违反CHSH不等式

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We present a purely wave model (based on classical random field) which reproduces quantum probabilities (given by the fundamental law of quantum mechanics, Born's rule) including probabilities for joint detection of a pair of quantum observables (e.g., spin or polarization projections). The crucial point of our approach is that the presence of detector's threshold and calibration procedure have to be treated not as simply experimental technicalities, but as the basic counterparts of the theoretical model. The presence of the background field (vacuum fluctuations) is also the key-element of our prequantum model. It is of the classical signal type and the methods of classical signal theory (including statistical radiophysics) are used for its development. We stress that our prequantum model is not objective, i.e., the values of observables (clicks of detectors) cannot be assigned in advance, i.e., before measurement. Hence, the dilemma, nonobjectivity or nonlocality, is resolved in favor of nonobjectivity (our model is local of the classical field type). In particular, we reproduce the probabilities for the EPR-experiment for photon polarization and, hence, violate CHSH inequality for classical random signals (measured by the threshold type and properly calibrated detectors acting in the presence of the background field).
机译:我们提出了一个纯波浪模型(基于经典随机场),该模型再现了量子概率(由量子力学的基本定律,博恩法则赋予),包括联合检测一对量子可观测量(例如,自旋或极化投影)的概率。我们方法的关键点在于,检测器阈值和校准程序的存在不应该被简单地视为实验技术,而应被视为理论模型的基本对应物。背景场(真空波动)的存在也是我们量子前模型的关键要素。它属于经典信号类型,并且使用经典信号理论(包括统计放射物理学)的方法进行开发。我们强调,我们的量子前模型不是客观的,即不能预先(即在测量之前)指定可观察值(检测器的喀哒声)。因此,解决了非客观性或非局部性的难题,有利于非客观性(我们的模型是经典场类型的局部性)。特别是,我们重现了EPR实验中光子极化的可能性,因此违反了经典随机信号的CHSH不等式(由阈值类型和在背景场中起作用的经过适当校准的检测器测量)。

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