摘要
本文首次提出物质具有两种运动属性,即聚集性和波动性(量子性);这两种运动属性可分别用聚集参数(3C*)CP和量子参数 r,进行定量描述。井指出;聚集参数与量子参数遵循线性关系,从而提出波聚相关性原理。本原理不仅具有重要的理论意义,而且也有实际应用价值。
This paper presents the following viewpoint: matters have two properties of motion, that is wave (quantum) and aggregate properties, which may be described quantitatively by using the quantum mechanical parameter A. and the aggregate parameter (3C*)cp respectively. Based on analyzing results it is found that the functional relation between A. and (3C*)cp obeys a general straight-line rule, from which the (3C*)cp-value decreases as the Ar-value increases. It means that matter with strong quantum property, is weak on aggregate property. In addition, it is yet found that some of matters with 0 < (3C*)cp < 10, which are called ones with wave-aggregate duality, can produce certain singular phenomena under certain particular conditions, such as Bose-Einstein condensation, superfluid phenomena etc. On the basis of above contents this paper thus proposes the correlation-principle of wave-aggregate properties. This principle has not only important theoretical significance, but practical use-value as well.
出处
《工程热物理学报》
EI
CAS
CSCD
北大核心
2001年第1期16-18,共3页
Journal of Engineering Thermophysics
关键词
量子论
波动方程
物质
聚集性
波动性
wave and aggregate properties of matters
correlation principle of wave-aggregate duality
Bose-Einstein condensation and superfluid phenomena