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February 26, 2026Applied Physics B0 citationsOpen Access

Selective resonance ionization of calcium odd isotopes with odd–even selection rules

SWStephen R. WellsYIY. IwataMMMasabumi Miyabe

Key Points

  • The research aims to enhance selectivity in the resonance ionization of odd isotopes of calcium using angular momentum selection rules.
  • Utilized a laser resonance ionization method with a J=0-1-0 transition scheme.
  • Applied a half-waveplate to manipulate linear polarization angles.
  • Conducted spectroscopy in the Rydberg level transition to assess selectivity.
  • Analyzed effects of transition polarizations on isotope excitation.
  • Confirmed suppression of abundant isotopes and selection of rare isotopes based on polarization angle.
  • Achieved a maximal separation coefficient of β=9e3 for isotope selectivity.
  • Demonstrated the ability to forbid even isotope excitation while enabling odd isotope excitation.

Abstract

Odd-even isotope selectivity in calcium was investigated using a laser resonance ionization J=0-1-0 transition scheme, chosen so that angular momentum selection rules could be applied using linearly polarized light. Suppression of the abundant isotope ^40 Ca and selection of the rare isotope ^43 Ca was confirmed as a function of the linear polarization angle, through simple application of a half-waveplate (/2). In the electric dipole basis, by the selection rules, setting transition polarizations linearly orthogonal forbids the excitation of the even isotopes, while allowing the odd isotope excitation. Spectroscopy in the Rydberg level transition also showed selectivity in the resonance ionization process, with a final maximal (dependent on hyperfine transition) selectivity reported as a separation coefficient = 9e3. It is expected that this relatively simple method in increasing selectivity of resonance ionization will have application to separation of the rare odd Ca isotopes as they are important in areas such as quantum information via ion trapping (^43 Ca), and cosmology and biomedicine (^41 Ca).

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Cite This Study

Wells et al. (2026) studied this question.

synapsesocial.com/papers/699fe3d995ddcd3a253e7d5chttps://doi.org/10.1007/s00340-026-08641-0
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