首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Calculation of transition probabilities and ac Stark shifts in two-photon laser transitionsof antiprotonic helium
【24h】

Calculation of transition probabilities and ac Stark shifts in two-photon laser transitionsof antiprotonic helium

机译:反质子氦在双光子激光跃迁中的跃迁几率和ac Stark位移的计算

获取原文
获取原文并翻译 | 示例
           

摘要

Numerical ab initio variational calculations of the transition probabilities and ac Stark shifts in two-photon transitions of antiprotonic helium atoms driven by two counter-propagating laser beams are presented. We found that sub-Doppler spectroscopy is, in principle, possible by exciting transitions of the type (n , L)—iu (n — 2,L — 2) between antiprotonic states of principal and angular momentum quantum numbers n L — 1 — 35, first by using highly monochromatic, nanosecond laser beams of intensities 104-105 W/cm2, and then by tuning the virtual intermediate state close (e.g., within 10-20 GHz) to the real state (n — 1,L — 1) to enhance the nonlinear transition probability. We expect that ac Stark shifts of a few MHz or more will become an important source of systematic error at fractional precisions of better than a few parts in 109. These shifts can, in principle, be minimized and even canceled by selecting an optimum combination of laser intensities and frequencies. We simulated the resonance profiles of some two-photon transitions in the regions n = 30-40 of the /54He+ and p3He+ isotopes to find the best conditions that would allow this.
机译:提出了由两个反向传播的激光束驱动的反质子氦原子的双光子跃迁的跃迁概率和ac Stark跃迁的数值从头算变化计算。我们发现,原则上,通过在主质子反质子态和角动量量子数n L_1-的类型(n,L)-iu(n-2,L_2)的激发跃迁可以实现亚多普勒光谱参照图35,首先通过使用强度为104-105 W / cm2的高度单色的纳秒激光束,然后通过将虚拟中间状态调整为接近(例如,在10-20 GHz范围内)真实状态(n_1,L_1) ),以提高非线性过渡概率。我们期望,以几兆赫或更高频率进行的ac斯塔克频移将成为系统误差的重要来源,其分数精度优于109中的几个部分。原则上,可以通过选择以下最佳组合来最小化甚至抵消这些频移:激光强度和频率。我们在/ 54He +和p3He +同位素的n = 30-40区域中模拟了一些两个光子跃迁的共振曲线,以找到最佳条件。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号