Abstract
With a phase-modulated extreme ultraviolet pulsed laser source the frequency of the 1[Formula Presented]S-2[Formula Presented]P transition of helium at 58 nm has been measured. The phase modulation scheme enabled measurement and reduction of frequency chirp, usually limiting pulsed precision spectroscopy. From the measured transition frequency of 5 130 495 083(45) MHz, a fourfold improved value of the ground state Lamb shift of 41 224(45) MHz is deduced, in good agreement with a theoretical value of 41 233(35) MHz based on QED calculations up to order [Formula Presented]. From these measurements, the well-known binding energy of the 2[Formula Presented]P state and the previously determined [Formula Presented]He isotope shift, accurate values for the ionization energies of the helium atom follow: 198 310.6672(15)[Formula Presented] for [Formula Presented] and 198 301.8808(15)[Formula Presented] for [Formula Presented]. © 1997 The American Physical Society.
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CITATION STYLE
Eikema, K. S. E., Ubachs, W., Vassen, W., & Hogervorst, W. (1997). Lamb shift measurement in the [Formula Presented]S ground state of helium. Physical Review A - Atomic, Molecular, and Optical Physics, 55(3), 1866–1884. https://doi.org/10.1103/PhysRevA.55.1866
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