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液态纳米团簇的量子驻波本质研究

he Physcial of Quantum Standing Wave in Nanometer Liquid cluster

中文摘要英文摘要

本文从纳米特征尺度的分子或者原子团簇的界面量子驻波理论, 提出对于液态物质其真实存在状态是纳米尺度的分子簇或原子簇的集合,由于在纳米尺度,液体分子团簇内部存在相反方向对称的界面量子相互作用,在团簇内部产生量子驻波,降低了表面电子能级,而使得纳米特征尺度以下的液体团簇在特定条件下,可以独立稳定存在。这样从纳米尺度角度可以对于液体及其发生的蒸发和汽化、冷凝和凝固过程给出一个新的理论认识。新的理论可以很自然地建立液体分子簇的存在热力学和量子动力学原因,将液体团簇中的量子动力学与宏观热力学通过纳米尺度驻波理论建立起新的联系。对于流体力学的理论和凝聚态物理学提出了新的纳米尺度研究思路,可以回答以前经典理论无法解释的很多问题。

In this paper,according to nano cluster of interface quantum standing wave theory, proposed for liquid nano-scale cluster stability of quantum mechanics reasons, liquid cluster instead direction symmetric of interface electron produce quantum standing wave, reduced has surface electronic energy level, liquid cluster can independent stable exists. The evaporation and evaporation of liquid, condensed materials cooling and solidification process can be given a new theory to explain. New theories can naturally build the relation between clusters of liquid thermal-dynamics and quantum mechanicals, liquid cluster dynamics and macroscopic thermodynamics by nano-scale standing wave theory to establish new contacts. Fluid Dynamics theory and condensed matter physics, introduced a new nano-scale research, can explain the classical theory problems before.

苏力宏

物理学

团簇纳米特征尺度量子驻波流体力学表面张力

clusternanometer characteristic sizequantum standing wavefluid mechanicssurface tension

苏力宏.液态纳米团簇的量子驻波本质研究[EB/OL].(2015-07-07)[2025-08-18].http://www.paper.edu.cn/releasepaper/content/201507-54.点此复制

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