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Linear and nonlinear optical properties of an erbium two-photon dye salt

  • G. S. Maciel
  • , K. S. Kim
  • , S. J. Chung
  • , J. Swiatkiewicz
  • , G. S. He
  • , P. N. Prasad
  • SUNY Buffalo

Research output: Contribution to journalArticlepeer-review

26 Scopus citations

Abstract

The optical properties of erbium tri-4-{[4-(2-{4-[5-(4-/ert-butyl-phenyl)-[l,3,4]oxadiazol-2-yl]-phenyl}-vinyl) phenyl]-phenyl-amino}-benzoate, viz., an erbium two-photon dye salt, were investigated in THF solutions. Using the corresponding two-photon dye monomer acid as a reference material, we observed that the photoluminescence of the erbium two-photon dye salt was quenched significantly while nonlinear absorption for infrared nanosecond excitation was enhanced compared to the monomeric form. On the other hand, . femtosecond Z-scan measurements suggest the same two-photon absorption coefficient for the dye in both forms. A possible explanation is that the presence of erbium enhances the intersystem crossing rate and that the nonlinear absorption effect must be due to two-photon absorption and subsequent triplet-triplet excitedstate absorption for nanosecond pulsed excitation. Our analysis of the nonlinear absorption (power limiting) data suggests that the intersystem crossing rate is 3 orders of magnitude larger for the erbium two-photon dye salt compared with that in the monomer form.

Original languageEnglish
Pages (from-to)3155-3157
Number of pages3
JournalJournal of Physical Chemistry B
Volume105
Issue number16
DOIs
StatePublished - Apr 26 2001

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