Lesanovsky Igor, Schmelcher Peter
Physikalisches Institut, Universität Heidelberg, Philosophenweg 12, 69120 Heidelberg, Germany.
Phys Rev Lett. 2005 Jul 29;95(5):053001. doi: 10.1103/PhysRevLett.95.053001. Epub 2005 Jul 26.
We investigate the quantum dynamics of ultracold Rydberg atoms being exposed to a magnetic quadrupole field. A Hamiltonian describing the coupled dynamics of the electronic and center of mass motion is derived. Employing an adiabatic approach, the potential energy surfaces for intra-n-manifold mixing are computed. By determining the quantum states of the center of mass motion, we demonstrate that trapped states can be achieved if the total angular momentum of the atom is sufficiently large. This holds even if the extension of the electronic Rydberg state becomes equal to or even exceeds that of the ultracold center of mass motion.
我们研究了暴露于磁四极场中的超冷里德堡原子的量子动力学。推导了一个描述电子和质心运动耦合动力学的哈密顿量。采用绝热方法,计算了n内流形混合的势能面。通过确定质心运动的量子态,我们证明如果原子的总角动量足够大,就可以实现俘获态。即使电子里德堡态的扩展等于甚至超过超冷质心运动的扩展,这一点仍然成立。