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Influences of externally applied potential on the properties of microscopic particles in nonlinear quantum systems

机译:外加电势对非线性量子系统中微观粒子性质的影响

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When the Schrodinger equation in quantum mechanics is replaced by the nonlinear Schrodinger equation to describe microscopic particles in nonlinear quantum systems, it has been verified that the nature of the particles differs considerably from those in quantum mechanics, where they are localized and have also wave-corpuscle duality due to the nonlinear interactions. In this case the influences of externally applied potentials in the nonlinear Schrodinger equation on the natures of the microscopic particles have been studied by a perturbation theory. The studied results show that the external potential can change the states of the microscopic particles, such as the positions, amplitude and wave forms, but cannot change the wave-corpuscle duality. In the meanwhile, we find further that the relationship between the external potential and change of positions of the particle satisfies the rule of motion of classical particles. Thus we know from this study that the kinetic energy term, (h~2/2m)△~2φ, in the nonlinear Schrodinger equation can only make the microscopic particles have a wave feature, but the nonlinear interaction b|φ|~2φ determines its corpuscle feature, their combination makes the microscopic particles have a wave-corpuscle duality, and the potential V(r~→,t)e; changes only the positions, amplitude and wave form of the particles. Therefore the nonlinear interaction plays an important role in determination of the wave-corpuscle duality of microscopic particles in quantum theory.
机译:当用非线性Schrodinger方程代替量子力学中的Schrodinger方程来描述非线性量子系统中的微观粒子时,已经证实,粒子的性质与量子力学中的粒子存在显着差异,在量子力学中它们被局部化并且还具有波由于非线性相互作用,使小体对偶。在这种情况下,已经通过扰动理论研究了非线性Schrodinger方程中外部施加的电势对微观粒子性质的影响。研究结果表明,外部电势可以改变微观粒子的状态,例如位置,振幅和波形,但不能改变波粒对偶。同时,我们进一步发现,外部势与粒子位置变化之间的关系满足经典粒子的运动规律。因此,从这项研究中我们知道,非线性薛定inger方程中的动能项(h〜2 / 2m)△〜2φ只能使微观粒子具有波动特征,但非线性相互作用b |φ|〜2φ决定了它的小体特征,它们的结合使微观粒子具有波小体的对偶性,并且势V(r〜→,t)e;仅更改粒子的位置,幅度和波形。因此,非线性相互作用在量子理论中确定微观粒子的波-质对偶性中起重要作用。

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