Analytical Solution of Non-Linear Oscillator and Thermal Properties of Interacting System of Real Polyatomic Molecules

Orukari Ma, Ngiangia At
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Abstract

The study examined the solution of nonlinear oscillator and thermal properties of interacting system of real polyatomic molecules. A nonlinear oscillator potential was substituted into the radial part of the Schrodinger wave equation and solved using the Frobenius method to obtain the energy eigenvalues of the system. The partition function and the energy eigenvalues are used to determine three thermal properties for four polyatomic molecules which showed that added energy is required in the absence of the nonlinear term as the orbital and magnetic quantum numbers are increased and degeneracy completely removed. Other findings also reveal that as the virial coefficients of the four polyatomic molecules vary, the additive property of entropy is observed as well as the enhancement of the mean energy approximately proportional to the volume of the molecules. The four polyatomic molecules under consideration are environmentally impactful and are indispensable to man.
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非线性振荡器的解析解与真实多原子分子相互作用系统的热特性
该研究考察了非线性振荡器的求解和实际多原子分子相互作用系统的热特性。将非线性振荡器势代入薛定谔波方程的径向部分,并使用弗罗贝尼斯法求解,从而得到系统的能量特征值。利用分割函数和能量特征值确定了四种多原子分子的三种热特性,结果表明,随着轨道量子数和磁量子数的增加以及退化现象的完全消除,在没有非线性项的情况下需要增加能量。其他研究结果还表明,随着四种多原子分子的维拉系数的变化,熵的可加性以及与分子体积近似成正比的平均能量的增强也被观察到。所研究的四种多原子分子对环境有影响,是人类不可或缺的物质。
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