A full strength Coulomb interaction between trapped electrons can be felt only in absence of a neutralizing background. In order to study quantum degenerate electrons without such a background, an external trap is needed to compensate for the strong electronic repulsion. As a basic model for such a system, we study a trapped electron pair in a harmonic trap with an explicit inclusion of its Coulomb interaction. We find the eigenenergy of the ground state, confirming earlier work in the context of harmonium. We extend this to a complete set of properly scaled energies for any value of the trapping strength, including the excited states. The problem is solved either numerically or by making harmonic approximations to the potential. As function of the trapping strength a crossover can be made from the strongly to the weakly-coupled regime, and we show that in both regimes perturbative methods based on a pair-wise electron description would be effective for a many-particle trapped electron system, which resembles a Wigner crystal in the ground state of the strongly coupled limit.
翻译:被困电子之间的完全强度 Coulomb 互动只有在没有中和背景的情况下才能感受到被困电子之间的充分强度 。 为了研究没有这种背景的量子降解电子, 需要外部陷阱来补偿强烈的电子反射。 作为这个系统的基本模型, 我们研究一个在调音装置中的被困电子对配对对对, 并明确包括了它的库伦互动。 我们发现地面状态的静电能量, 证实了先前在和谐体中的工作 。 我们把这个能量扩大到一套完整的适当缩放的能量, 以达到捕捉强度的任何值, 包括兴奋状态 。 问题要么在数字上解决, 要么通过对潜在进行相近。 由于捕捉强度的功能可以从强到弱相交错的系统, 我们显示在两种系统中, 双向电描述的干扰方法对许多被困的电系统都有效, 与强相连接的地面状态的威力晶体类似 。