On the Origin of Discrete Emission Spectra in Continuous Repulsive Volumetric Dynamics (CRVD)
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Continuous Repulsive Volumetric Dynamics (CRVD) provides a framework where discrete emission spectra are a direct manifestation of Thermal–Pressure Quantization. The discrete spectral lines correspond to transitions between stable, localized solutions of the Volumetric Field ($\Psi$) that are only sustainable under specific, quantized thermodynamic pressures and temperatures dictated by the surrounding environment. This interpretation offers a consistent classical-field basis for spectral discreteness while naturally explaining the observed shifts and broadenings of spectral lines in response to changes in the local thermodynamic variables.
连续排斥体积动力学(Continuous Repulsive Volumetric Dynamics, CRVD)提出了一套理论框架,其中离散发射光谱是热压量子化的直接体现。这些离散谱线对应于体积场(Volumetric Field, Ψ)的稳定局域解之间的跃迁,这类解仅在由周围环境所确定的特定量子化热力学压强与温度条件下才可稳定存在。该诠释为光谱离散性提供了自洽的经典场理论基础,同时可自然解释观测到的谱线随局域热力学变量变化所产生的频移与展宽效应。



