Spectroscopy of GR1 centers in synthetic diamonds

Abstract

We report on the spectroscopic characterization, absorption saturation, and excited-state dynamics of GR1 centers in synthetic diamonds. The non-linear optical measurements reveal an efficient bleaching of the GR1 center’s ground level under ns-pulsed 633 nm excitation. The maxima of absorption and emission cross sections were estimated to be 4.5 × 10−17 cm2 and 9 × 10−17 cm2 at 630 nm and 780 nm, respectively. The radiative lifetime of the excited level was estimated to be 8.5 ns. The 658 nm probe kinetics uncovered relaxation of 1T2 excited level going predominantly to a metastable state with a lifetime of 220 μs. An induced absorption detected with the use of a highly concentrated diamond sample could be due to up-conversion and photoionization processes in additional impurity-vacancy center with absorption at the short-wavelength tail of GR1. The results presented here indicate that synthetic diamonds with GR1 centers could serve as near infrared gain media or passive Q-switchers for laser cavities over the 633–750 nm spectral range. Optimization of the center concentration and the crystal parameters are required to minimize the induced absorption at the lasing wavelengths.

Document Details

Document Type
Pub Defense Publication
Publication Date
Feb 12, 2021
Source ID
10.1364/ome.417432

Entities

People

  • Matthew Markham
  • Sergey Mirov
  • Shova Subedi
  • Vladimir Fedorov

Organizations

  • Air Force Office of Scientific Research
  • National Institute of Environmental Health Sciences
  • United States Department of Energy
  • University of Alabama at Birmingham

Tags

Fields of Study

  • Physics

Readers

  • Materials Science and Engineering.
  • Molecular Photonics/Laser Physics
  • Radar Systems Engineering.

Technology Areas

  • Directed Energy
  • Directed Energy - Lasers