Explaining Double Split Experiment with Geometrical Algebra Formalism

A. Soiguine
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引用次数: 1

Abstract

The Geometric Algebra formalism opens the door to developing a theory upgrading conventional quantum mechanics. Generalizations, stemming from implementation of complex numbers as geometrically feasible objects in three dimensions; unambiguous definition of states, observables, measurements bring into reality clear explanations of conventional weird quantum mechanical features, particularly the results of double split experiments where particles create diffraction patterns inherent to wave diffraction. This weirdness of the double split experiment is milestone of all further difficulties in interpretation of quantum mechanics.
用几何代数形式主义解释双裂实验
几何代数的形式主义为发展传统量子力学的理论升级打开了大门。泛化,源于复数在三维空间中作为几何可行对象的实现;状态的明确定义,可观察到的,测量带来了现实的清晰解释,传统的奇怪的量子力学特征,特别是双分裂实验的结果,粒子产生固有的衍射图案波衍射。双裂实验的怪异之处是解释量子力学中所有进一步困难的里程碑。
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