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作 者:寇元哲 郑兴荣 谢凯强 唐歡 郑燕飞 KOU Yuan-zhe;ZHENG Xing-rong;XIE Kai-qiang;TANG Huan;ZHENG Yan-fei(College of Mechanical Engineering,Longdong University,Qingyang 745000,Gansu,China;Department of Physics,College of Electrical Engineering,Longdong University,Qingyang 745000,Gansu,China;School of Physics Science and Technology,Southwest University,Chongqing 400715,China)
机构地区:[1]陇东学院机械工程学院,甘肃庆阳745000 [2]陇东学院电气工程学院物理系,甘肃庆阳745000 [3]西南大学物理科学与技术学院,重庆400715
出 处:《云南大学学报(自然科学版)》2021年第5期913-920,共8页Journal of Yunnan University(Natural Sciences Edition)
基 金:甘肃省青年科技基金(20JR10RA135);甘肃省教育厅高等学校创新能力项目(2019A-112);国家自然科学基金(11565018)。
摘 要:基于量子理论和数值计算,重点研究了量子力学中二、三维线性谐振子的基本特性,包括波函数及其能量、能级、简并度和几率密度,得到了三维谐振子的四维图形,同时得到了二维线性谐振子的三维图形.结果表明,线性谐振子能量只能取分立值,能量是量子化的;谐振子的能级是均匀分布的,且相邻两能级间隔为ΔE=ħω.二维线性谐振子的简并度为N+1,但N=0时,对应的基态波函数无简并;波函数与平面Ψ=0的交线数为N;几率密度图能更直观地显示出几率密度的峰值个数与大小,且几率密度分布的极大值个数为(n_(x)+1)(n_(y)+1).三维情况下,以基态波函数为准,在一定范围内([−3,3]),x,y,z轴上的切片数分别为n_(x)+1,n_(y)+1,n_(z)+1,总的切片数为n_(x)+n_(y)+n_(z)+3.另外,通过MATLAB软件得到了三维线性谐振子的四维空间切片图,可视化的结果与理论结果完全吻合.Based on quantum theory and numerical calculation,we have mainly studied the basic characteristic of n-dimensional linear harmonic oscillator,including wave function,energy,energy levels,degeneracy and probability density,and obtain four-dimensional figures of three-dimensional harmonic oscillator and 3D figures of two-dimensional harmonic oscillator.The results show that the energy of a linear harmonic oscillator is discrete and the energy is quantized.The energy of a harmonic oscillator is evenly distributed,two adjacent energy level spacing isΔE=ħω.The degeneracy of two-dimensional linear harmonic oscillator is N+1,but the corresponding ground-state wave function has no degeneracy when N=0.The intersection line between wave function and the plane withΨ=0 is N.The probability density graph can more intuitively show the number and magnitude of the peak value of probability density,and the number of maximal value of probability density distribution is(n_(x)+1)(n_(y)+1).For the three-dimensional linear harmonic oscillator,based on the ground state wave function,within a certain range([−3,3]),the slices numbers of the x,y and z axis are n_(x)+1,n_(y)+1,n_(z)+1,respectively.The total number of slices is n_(x)+n_(y)+n_(z)+3.In addition,this research has obtained the four-dimensional space slice diagrams of three-dimensional linear harmonic oscillator by MATLAB software.The results of this visualization have established consistence with the theoretical results.
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