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Published February 2018 | public
Journal Article

Technique for frequency selective, sub-diffraction limited imaging of rare-earth ions in bulk crystals

Abstract

We propose and demonstrate the principle of a sub-diffraction-limited optical imaging technique for rare-earth ion crystals that preserves the ions' homogeneous line width. Our method uses a combination of applied electric field gradients and optical pumping to create a resonant nanoscopic volume within an otherwise non-resonant macroscopic crystal. We present the concept of the Stark activation technique and perform a demonstration in Pr^(3+): Y_2SiO_5 in which we create a 10 μm-thick absorption feature in a 1 mm thick crystal. By modeling the system we show that it is possible to increase the resolution of the technique to the 5 nm range for single Pr^(3+) ions. We also discuss the physical properties that will fundamentally limit the resolution of Stark activation. Because the proposed technique simultaneously achieves high spatial and high spectral resolution it is an enabling protocol to realize technology based on single rare-earth ions and harness short-range interactions in ensembles.

Additional Information

© 2017 Elsevier B.V. Received 9 July 2017, Revised 13 October 2017, Accepted 14 October 2017, Available online 16 October 2017.

Additional details

Created:
August 21, 2023
Modified:
October 18, 2023