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Building Blocks of Nature

Building Blocks of Nature
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摘要 By means of a representation of the elementary objects by the Lagrange density and by the commutators of the communication relations, correlations can be formed using the Fourier transform, which under the conditions of the Hamilton principle, describes correlation structures of the elementary objects with oscillator properties. The correlation structures obtained in this way are characterized by physical information, the essential component of which is the action. The correlation structures describe the physical properties and their interactions under the sole condition of the Hamilton’s principle. The structure, the properties and the interactions of elementary objects can be led back in this way to a fundamental four dimensional structure, which is therefore in their different modifications the building block of nature. With the presented method, an alternative interpretation of elementary physical effects to quantum mechanics is obtained. This report provides an overview of the fundamentals and statements of physical information theory and its consequences for understanding the nature of elementary objects. By means of a representation of the elementary objects by the Lagrange density and by the commutators of the communication relations, correlations can be formed using the Fourier transform, which under the conditions of the Hamilton principle, describes correlation structures of the elementary objects with oscillator properties. The correlation structures obtained in this way are characterized by physical information, the essential component of which is the action. The correlation structures describe the physical properties and their interactions under the sole condition of the Hamilton’s principle. The structure, the properties and the interactions of elementary objects can be led back in this way to a fundamental four dimensional structure, which is therefore in their different modifications the building block of nature. With the presented method, an alternative interpretation of elementary physical effects to quantum mechanics is obtained. This report provides an overview of the fundamentals and statements of physical information theory and its consequences for understanding the nature of elementary objects.
作者 Hans Joachim Dudek Hans Joachim Dudek(Retired, Auf dem Komp, Germany)
机构地区 Retired
出处 《Journal of High Energy Physics, Gravitation and Cosmology》 CAS 2024年第3期1226-1303,共78页 高能物理(英文)
关键词 Hamilton Principle as Global Law in Physics Physical Information Generated by Action Correlation Space Mass and Charge Formation Interpretation of Physical Effects Hamilton Principle as Global Law in Physics Physical Information Generated by Action Correlation Space Mass and Charge Formation Interpretation of Physical Effects
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