Spectroscopy of single Pr3+ ion in LaF3 crystal at 1.5 K.

Sci Rep

Department of Physics, Tokyo Institute of Technology, Ookayama 2-12-1 Meguro Tokyo, 152-8550 Japan.

Published: December 2014

AI Article Synopsis

  • The study focuses on using single rare-earth ions, specifically Pr(3+), in LaF3 crystals for quantum information storage and transport.
  • A custom-built cryogenic confocal microscope with a specialized reflecting objective enhances signal detection and reduces background noise from out-of-focus ions.
  • The photo-luminescence excitation spectrum shows distinct isolated peaks from individual Pr(3+) ions, highlighting their potential for quantum applications at low temperatures.

Article Abstract

Optical read-out and manipulation of the nuclear spin state of single rare-earth ions doped in a crystal enable the large-scale storage and the transport of quantum information. Here, we report the photo-luminescence excitation spectroscopy results of single Pr(3+) ions in a bulk crystal of LaF3 at 1.5 K. In a bulk sample, the signal from a single ion at the focus is often hidden under the background signal originating from numerous out-of-focus ions in the entire sample. To combine with a homemade cryogenic confocal microscope, we developed a reflecting objective that works in superfluid helium with a numerical aperture of 0.99, which increases the signal by increasing the solid angle of collection to 1.16π and reduces the background by decreasing the focal volume. The photo-luminescence excitation spectrum of single Pr(3+) was measured at a wing of the spectral line of the (3)H4 → (3)P0 transition at 627.33 THz (477.89 nm). The spectrum of individual Pr(3+) ions appears on top of the background of 60 cps as isolated peaks with intensities of 20-30 cps and full-width at half-maximum widths of approximately 3 MHz at an excitation intensity of 80 W cm(-2).

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4258646PMC
http://dx.doi.org/10.1038/srep07364DOI Listing

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