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Classical Dynamics of Muonic-Electronic Helium and Heliumlike Ions: The Allowance for the Eccentricity of the Muon and Nucleus Orbits
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作者 Nikolay Kryukov Eugene Oks 《Open Journal of Microphysics》 2021年第3期27-36,共10页
In the previous paper by one of us (hereafter paper I), the author considered Rydberg states of the muonic-electronic helium atom or helium-like ion and used the fact that the muon motion occurs much more rapidly than... In the previous paper by one of us (hereafter paper I), the author considered Rydberg states of the muonic-electronic helium atom or helium-like ion and used the fact that the muon motion occurs much more rapidly than the electron motion. Assuming that the muon and nucleus orbits are circular, he applied the analytical method based on separating rapid and slow subsystems. He showed that the electron moves in an effective potential that is mathematically equivalent to the potential of a satellite orbiting an oblate planet like the Earth. He also showed that the “unperturbed” elliptical orbit of the electron engages in two precessions simultaneously: the precession of the electron orbit in the plane of the orbit and the precession of the orbital plane of the electron around the axis perpendicular to the plane of the muon and nuclear orbits. The problem remained whether or not the allowance for the ellipticity of the orbit could significantly change the results. In the present paper, we address this problem: we study how the allowance for a relatively low eccentricity ε of the muon and nucleus orbits affects the motion of the electron. We derive an additional, ε-dependent term in the effective potential for the motion of the electron. We show analytically that in the particular case of the planar geometry (where the electron orbit is in the plane of the muon and nucleus orbits), it leads to an additional contribution to the frequency of the precession of the electron orbit. We demonstrate that this additional, ε-depen- dent contribution to the precession frequency of the electron orbit can reach the same order of magnitude as the primary, ε-independent contribution to the precession frequency. Therefore, the results of our paper seem to be important not only qualitatively, but also quantitatively. 展开更多
关键词 Muonic-Electronic helium Muonic-Electronic helium-like ions Rydberg States Role of the Eccentricity of the Muon Orbit Precession of the Electron Orbit
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自由电子激光制备高强度亚稳态氦原子和类氦离子
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作者 杜小娇 魏龙 +1 位作者 孙羽 胡水明 《物理学报》 SCIE EI CAS CSCD 北大核心 2024年第15期22-29,共8页
在少电子原子精密光谱测量中,产生高强度、单一量子态的氦原子和类氦离子是实验研究的关键,也是改善实验测量信噪比的决定性因素.本文提出利用自由电子激光获得高强度亚稳态氦原子和类氦离子的实验方案.激光的制备效率可以通过求解光和... 在少电子原子精密光谱测量中,产生高强度、单一量子态的氦原子和类氦离子是实验研究的关键,也是改善实验测量信噪比的决定性因素.本文提出利用自由电子激光获得高强度亚稳态氦原子和类氦离子的实验方案.激光的制备效率可以通过求解光和原子相互作用的主方程获得,根据拟建设的深圳自由电子激光装置的设计参数和实验条件,计算得到亚稳态He,Li^(+)和Be^(2+)的制备效率分别可达3%,6%和2%以上.与常见的气体放电和电子轰击等制备方法相比,激光激发产生亚稳态原子/离子不仅可以提高制备产率,也可以降低放电时产生的电子、离子以及光子等高能杂散粒子的影响.利用自由电子激光激发制备亚稳态氦原子和类氦离子有望应用于多个研究领域. 展开更多
关键词 亚稳态氦原子和类氦离子 精密光谱 自由电子激光 测量信噪比 制备效率
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