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- W2012120788 abstract "The state-specific drift velocity of ${mathrm{Ca}}^{+}$ ions in the 3 $^{2}mathrm{D}_{3/2}$ metastable state and of ${mathrm{Cd}}^{+}$ in the 6 $^{2}$${mathit{P}}_{3/2}$ highly excited state in a helium glow-discharge plasma have been precisely measured by using a tunable single-mode diode laser and the state-specific mobility of excited ions has been discussed. The results show that the mobility of ${mathrm{Ca}}^{+}$ ions in the metastable state is determined by momentum-loss collisions and is almost identical with the value for ${mathrm{Ca}}^{+}$ in the ground state. In the experiment with a thin cylindrical tube, the apparent value of the mobility is dependent on the diffusion in the radial direction. On the other hand, the apparent mobility of ${mathrm{Cd}}^{+}$ ions in the 6 $^{2}$${mathit{P}}_{3/2}$ state is much smaller than the calculated result for ${mathrm{Cd}}^{+}$ in the ground state, but the value increases significantly with Cd vapor density. This is explained by the fact that ${mathrm{Cd}}^{+}$ ions in the 6 $^{2}$${mathit{P}}_{3/2}$ highly excited state decay quickly by the radiative process and the apparent mobility of the ${mathrm{Cd}}^{+}$ ions in this state in the plasma is dependent not only on the radiative lifetime but also on the excitation mechanisms for the state." @default.
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- W2012120788 date "1993-01-01" @default.
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- W2012120788 title "State-specific mobility of excited cadmium and calcium ions in a discharge plasma measured by a tunable diode laser" @default.
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- W2012120788 doi "https://doi.org/10.1103/physreve.47.623" @default.
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