论文标题
研究一些由二维各向同性振荡器和外部磁场中的二次二次电势界定的双原子分子
Investigating Some Diatomic Molecules Bounded by Two-Dimensional Isotropic Oscillator Plus Inverse Quadratic Potential in an External Magnetic field
论文作者
论文摘要
我们研究了对能量光谱的非层次性磁效应,某些量子力学可观察物的预期值以及对某些受各向同性振荡器和逆二次势界的双原子分子的易感性。通过参数Nikiforov-Uvarov方法获得了能量特征值和归一化波形。通过应用Hellmann-Feynman定理获得了位置R2,动量P2,动能能量和势能V的期望值平方,并且还得出了DiMagnetic敏感性X的表达。使用光谱数据,计算一组硅藻分子(I2,H2,CO,HCL)的低旋转和低振动能光谱,预期值和磁敏感性X计算Larmor频率。发现计算的能量光谱,期望值和磁敏感性X比振动频率和所选分子的质量更受外部磁场强度和逆二次势强度G的影响。
We investigate the nonrelativistic magnetic effect on the energy spectra, expectation values of some quantum mechanical observables and diamagnetic susceptibility for some diatomic molecules bounded by the Isotropic oscillator plus inverse quadratic potential. The energy eigenvalues and normalized wavefunctions are obtained via parametric Nikiforov-Uvarov method. The expectation values square of position r2, square of momentum p2, kinetic energy T and potential energy V are obtained by applying Hellmann-Feynman theorem and an expression for the diamagnetic susceptibility X is also derived. Using the spectroscopic data, the low rotational and low vibrational energy spectra, expectation values and diamagnetic susceptibility X for a set of diatomic molecules (I2, H2, CO, HCl) for arbitrary values Larmor frequencies are calculated. The computed energy spectra, expectation values and diamagnetic susceptibility X were found to be more influenced by the external magnetic field strength and inverse quadratic potential strength g than the vibrational frequencies and the masses of the selected molecules.