论文标题
熵动力学和量子“测量”
Entropic Dynamics and Quantum "Measurement"
论文作者
论文摘要
量子力学的熵动力学方法(ED)方法非常适合解决测量问题,因为它基于已设计用于处理信息和数据的熵和贝叶斯推理方法。该方法之所以成功,是因为ED在原性元素和认知元素之间取得了明显的分离:位置是肿瘤的,而概率和波浪功能是认知的。因此,ED是一个可行的现实主义者Psi-Pepistemic模型。这样的模型被广泛认为被各种无关定理所排除。我们表明,埃德通过采用纯粹的认知动态来逃避这些定理,并否认在亚量子层的存在动力学。
The entropic dynamics (ED) approach to quantum mechanics is ideally suited to address the problem of measurement because it is based on entropic and Bayesian methods of inference that have been designed to process information and data. The approach succeeds because ED achieves a clear-cut separation between ontic and epistemic elements: positions are ontic while probabilities and wave functions are epistemic. Thus, ED is a viable realist psi-epistemic model. Such models are widely assumed to be ruled out by various no-go theorems. We show that ED evades those theorems by adopting a purely epistemic dynamics and denying the existence of an ontic dynamics at the subquantum level.