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Gamma-radiation-induced negative nonlinear absorption in quartz glass

  • Bryan W. Morgan
  • , Matthew P. Van Zile
  • , Piyush Sabharwall
  • , Milos Burger
  • , Igor Jovanovic

Research output: Contribution to journalArticlepeer-review

8 Scopus citations

Abstract

The effect of ionizing radiation on the nonlinear optical properties of materials needs to be considered for applications that employ high-power laser pulses in extreme radiation environments. The Heraeus Infrasil302 optical quartz glass was irradiated by gamma rays, and its nonlinear absorption was measured using the open-aperture Z-scan technique with nanosecond laser pulses. Irradiation results in a negative nonlinear absorption coefficient whose magnitude increases with irradiation dose. Nonlinear absorption coefficients of -0.78, -1.14, -1.29, and -1.88∼ × ∼10-13 m/W are measured for gamma doses of 600 krad, 1.2 Mrad, 3.6 Mrad, and 10 Mrad, respectively. Thermal annealing restores the optical properties of quartz-glass to their unirradiated values. It is suggested that metallic impurities introduced by the manufacturing process have a role in inducing saturated absorption in irradiated quartz glass, which manifests as negative nonlinear absorption coefficient, and is demonstrated by comparing Infrasil302 quartz results to equivalent irradiated measurements for Spectrosil2000 quartz.

Original languageEnglish
Pages (from-to)1188-1197
Number of pages10
JournalOptical Materials Express
Volume12
Issue number3
Early online dateFeb 23 2022
DOIs
StatePublished - Mar 1 2022

INL Publication Number

  • INL/JOU-23-70742
  • 146274

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