High Precision Measurement of the Rb 5S - 6S α/β Scalar and Vector Transition Polarizabilities and M1 Transition Amplitude

Poster

Abstract

Using a laser induced fluorescence spectroscopy scheme with a hyperfine pumped collimated Rb atomic beam, and a new laser power buildup cavity, we are greatly improving our measurement of the DC Stark induced one photon Rb 5S - 6S transition at 497 nm. We have measured the ratio of the atomic scalar and vector transition polarizabilities α corresponding to ΔF = 0, and β corresponding to ΔF = ±1, of the Rb 6S state. In particular, we have greatly improved the signal to noise of the much weaker ΔF = ±1 β transition, leading to a much smaller error in the ratio |α/β|. We compare this to theoretical calculations. We are working to measure the forbidden M1 transition amplitude of this transition, which would allow a test of Dirac negative energy states, the effect of which is predicted to be largest in this Rb transition.

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Presenters

  • Mark Lindsay

    • United States Air Force Academy

Authors

  • Mark Lindsay

    • United States Air Force Academy
  • Rajani Ayachitula

    • United States Air Force Academy
  • Monte Anderson

    • United States Air Force Academy
  • Arthur Knize

    • United States Air Force Academy
  • James Rivers

  • Zachary Aster

    • United States Air Force (USAF)
  • Randy Knize

    • United States Air Force Academy