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New method for polarizing complicated atoms

机译:极化复杂原子的新方法

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摘要

In the optical pumping process, spontaneous emission plays a unique role in redistributing the population of the ground level among the magnetic sub-levels. If is clear that the branching ratio of the relevant transition in the optical pumping must be nearly equal to unity in order to avoid the loss of population involved. Unfortunately, most complicated atoms do not have a simple energy level structure and cannot be polarized using optical pumping. We propose here a new polarizing method of a purely laser-driven process that avoids spontaneous emission and can be used in many heavier atoms. For J = 0 ground-state atoms, a complete population transfer to the meta-stable state can be used as efficient laser isotope separation, whereas a coherently prepared superposition state of the non-magnetic ground state and one of the magnetic states of the meta-stable level can be used as a tool to study the decoherent process. For J of the ground level no less than unity, partly removing the population on one of its sub-magnetic states will enhance the magnetic resonance signal significantly.
机译:在光抽运过程中,自发发射在重新分配磁性子级别中的地层数量方面发挥了独特的作用。如果清楚的是,光泵浦中相关跃迁的分支比必须接近等于1,以避免所涉及的种群损失。不幸的是,大多数复杂的原子没有简单的能级结构,也不能使用光泵浦来极化。我们在这里提出一种新的纯激光驱动过程的偏振方法,该方法避免了自发发射并可用于许多重原子。对于J = 0的基态原子,可以将完整的迁移到亚稳定态用作有效的激光同位素分离,而相干准备的非磁性基态和亚磁性态之一的叠加态稳定水平可用作研究去相干过程的工具。对于不小于1的地平面的J,部分除去其亚磁态之一的填充物将显着增强磁共振信号。

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