Solutions to Schrödinger’s equation

I. Kenyon
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Abstract

Eigenstates of the square well potential are calculated and displayed. Barrier penetration and the connection to total internal reflection are explained. α‎–decay by barrier penetration is calculated and used to explain Geiger–Nuttall plots. Gauss–Hermite solutions to the harmonic oscillator potential are deduced and displayed. Zero point fluctuations are introduced. Hydrogen atom eigenstate wavefunctions for the Coulomb potential are calculated and displayed. Principal, orbital angular momentum and intrinsic angular momentum quantum numbers and their allowed combinations are discussed and interpreted: n, l, ml, s and ms. The Stern–Gerlach experiment and Pauli’s perception that electron spin is half-integral are presented; as are Beth’s experiment and photon spin. Dominance of electric dipole transitions and resulting selection rules discussed. Fine spectral structure and spin-orbit coupling are described. Nuclear spin and resulting hyperfine spectral structure are introduced. Landé factors introduced.
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Schrödinger方程的解
计算并显示了平方势的特征态。解释了屏障穿透和与全内反射的关系。计算了势垒穿透的α′衰变,并用它来解释盖格-纳托尔图。推导并给出了谐振子势的高斯-埃尔米特解。引入零点波动。计算并显示了库仑势的氢原子本征态波函数。讨论并解释了主角动量、轨道角动量和本然角动量量子数及其允许的组合:n、l、ml、s和ms.给出了Stern-Gerlach实验和泡利关于电子自旋是半积分的看法;贝丝的实验和光子自旋也是如此。讨论了电偶极子跃迁的优势和由此产生的选择规则。描述了精细的光谱结构和自旋轨道耦合。介绍了核自旋和由此产生的超精细光谱结构。引入土地因素。
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Symmetry and topology Cavity quantum physics Solutions to Schrödinger’s equation Particle physics I Review of basic quantum physics
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