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Stability of atomic and molecular systems in strong external fields.

机译:在强大的外部领域中原子和分子系统的稳定性。

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摘要

Two projects are studied in this thesis: (1) Atomic and Molecular Stabilization in Super-Intense High-Frequency Laser Fields. (2) Entanglement of Dipole Arrays in External Electric Fields. Chapter 1 presents a general introduction and the motivation for these two projects. Chapter 2 focuses on atomic stabilization of negative multiple charged onions in linearly polarized super-intense high-frequency laser field in 3-dimensional space using both frequency independent (Section 2.2) and dependent (Section 2.3) potentials. By theoretical calculation, it is predicted that He-, He2-, Li- and Li2- are stable in super-intense high-frequency laser field. Chapter 3 studies atomic stabilization in both linearly and circularly polarized super-intense high-frequency laser field in both 3 dimensional space and large-D limit. Chapter 4 studies stabilization of simple diatomic molecules in linearly polarized super-intense high-frequency laser field in both 3 dimensional space and large-D limit. It was proved, in chapter 3 and 4, that dimensional scaling, combined with the High-Frequency Floquet theory, provides a useful means to evaluate the stability of gas phase atomic anions in a superintense laser field. Chapter 5 focuses on He-He bonding in linearly polarized super-intense high-frequency laser field. The distribution of the vibronic transitions from electric ground state to A1S+u excited state for He2 in superintense high frequency laser fields is obtained by numerical methods. Chapter 6 studies entanglement of multi-dimensional systems of dipoles in external electric fields. A new entanglement switch of qubits consisting of electric dipoles oriented along or against an external electric field and coupled by the electric dipole-dipole interaction is proposed in this chapter. The pairwise entanglement can be tuned and controlled by the ratio of the Rabi frequency and the dipole-dipole coupling strength. Tuning the entanglement can be achieved for one, two and three-dimensional arrangements of the qubits. The feasibility of building such an entanglement switch is also discussed in this chapter.
机译:本文研究了两个项目:(1)超强高频激光场的原子和分子稳定。 (2)外部电场中偶极阵列的纠缠。第1章介绍了这两个项目的概述和动机。第2章重点介绍了在3维空间中使用频率独立(第2.2节)和非独立(第2.3节)电势的线性极化超高强度高频激光场中负多重电荷洋葱的原子稳定性。通过理论计算,可以预测出He-,He2-,Li-和Li2-在超强高频激光场中是稳定的。第3章研究了在三维空间和大D限度下的线性和圆偏振超强高频激光场中的原子稳定。第4章研究了在三维空间和大D限度内线性偏振超高强度高频激光场中简单双原子分子的稳定性。在第3章和第4章中,已经证明,尺寸缩放比例与高频浮球理论相结合,为评估超强激光场中气相原子阴离子的稳定性提供了一种有用的手段。第5章重点讨论线性极化超高强度高频激光场中的He-He键合。利用数值方法获得了He2在超高强度激光场中从电基态到AlS + u激发态的振动跃迁分布。第6章研究了外部电场中偶极子多维系统的纠缠。在本章中,提出了一种新的量子位纠缠开关,该纠缠开关由电偶极子组成,这些电偶极子沿着或抵御外部电场定向并通过电偶极子-偶极子相互作用耦合。可以通过拉比频率与偶极-偶极耦合强度之比来调整和控制成对纠缠。可以为量子位的一维,二维和三维排列实现纠缠。本章还讨论了构建这种纠缠开关的可行性。

著录项

  • 作者

    Wei, Qi.;

  • 作者单位

    Purdue University.;

  • 授予单位 Purdue University.;
  • 学科 Chemistry Physical.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 152 p.
  • 总页数 152
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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