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Bohm's approach to quantum mechanics: Alternative theory or practical picture?

机译:鲍姆的量子力学方法:替代理论还是实际情况?

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Since its inception Bohmian mechanics has been generally regarded as a hidden-variable theory aimed at providing an objective description of quantum phenomena. To date, this rather narrow conception of Bohm's proposal has caused it more rejection than acceptance. Now, after 65 years of Bohmian mechanics, should still be such an interpretational aspect the prevailing appraisal? Why not favoring a more pragmatic view, as a legitimate picture of quantum mechanics, on equal footing in all respects with any other more conventional quantum picture? These questions are used here to introduce a discussion on an alternative way to deal with Bohmian mechanics at present, enhancing its aspect as an efficient and useful picture or formulation to tackle, explore, describe and explain quantum phenomena where phase and correlation (entanglement) are key elements. This discussion is presented through two complementary blocks. The first block is aimed at briefly revisiting the historical context that gave rise to the appearance of Bohmian mechanics, and how this approach or analogous ones have been used in different physical contexts. This discussion is used to emphasize a more pragmatic view to the detriment of the more conventional hidden-variable (ontological) approach that has been a leitmotif within the quantum foundations. The second block focuses on some particular formal aspects of Bohmian mechanics supporting the view presented here, with special emphasis on the physical meaning of the local phase field and the associated velocity field encoded within the wave function. As an illustration, a simple model of Young's two-slit experiment is considered. The simplicity of this model allows to understand in an easy manner how the information conveyed by the Bohmian formulation relates to other more conventional concepts in quantum mechanics. This sort of pedagogical application is also aimed at showing the potential interest to introduce Bohmian mechanics in undergraduate quantum mechanics courses as a working tool rather than merely an alternative interpretation.
机译:自从提出以来,波姆力学一直被认为是一种隐变量理论,旨在提供对量子现象的客观描述。迄今为止,对博姆的提议的这个相当狭concept的概念已经导致它的拒绝比接受更重要。现在,在经过65年的波姆力学之后,这种解释方面是否仍应是普遍的评价?为什么不赞成在所有方面与其他任何更常规的量子图在平等的基础上作为量子力学的合法图景的更务实的观点呢?这些问题在此处用于介绍有关当前处理波姆力学的另一种方法的讨论,从而增强其作为处理,探索,描述和解释相位和相关性(纠缠)的量子现象的有效和有用的图或公式的方面。关键要素。该讨论通过两个互补的模块进行。第一个步骤旨在简要地回顾一下引起鲍姆力学出现的历史背景,以及在不同的物理背景下如何使用这种方法或类似方法。该讨论用于强调更加务实的观点,以损害更为传统的隐藏变量(本体论)方法,该方法一直是量子基础中的主旋律。第二部分着重介绍了支持本文提出的观点的玻姆力学的某些形式形式,特别强调了局部相位场的物理意义以及在波函数中编码的相关速度场。作为说明,考虑了Young的两缝实验的简单模型。该模型的简单性使得可以轻松地理解由Bohmian公式传达的信息如何与量子力学中其他更常规的概念相关联。这种教学方法的目的还在于显示潜在的兴趣,以将波姆力学引入本科量子力学课程作为一种工作工具,而不仅仅是一种替代性的解释。

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