Local symmetry and Z-scan analysis of ZnSe/[Eu.sup.3+] doped sol-gel silica hosts
Vibrational state side-band spectral analysis of silica matrices, doped with ZnSe/[Eu.sup.3+] ions, associated with the excitation transition [sup.7][F.sub.0] → [sup.5][D.sub.2] is used to analyze the local asymmetry of the rare earth ions in the glass host. The large inhomogeneous linewidth for the...
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Published in | Canadian journal of physics Vol. 88; no. 7; pp. 493 - 500 |
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Main Authors | , , , , |
Format | Journal Article |
Language | English |
Published |
NRC Research Press
01.07.2010
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Abstract | Vibrational state side-band spectral analysis of silica matrices, doped with ZnSe/[Eu.sup.3+] ions, associated with the excitation transition [sup.7][F.sub.0] → [sup.5][D.sub.2] is used to analyze the local asymmetry of the rare earth ions in the glass host. The large inhomogeneous linewidth for the ZnSe co-doped samples indicates the wide distribution of the [Eu.sup.3+] ions in the matrix and is related to the flexibility of the local glass network. The fluorescence spectra reveal that the intensity of the characteristic emission of europium increases considerably in the presence of ZnSe particles. This phenomenon can be explained by the energy transfer resulting from electron-hole recombination in the ZnSe to the rare earth ion. Nonlinear optical absorption of the sample is also investigated at a wavelength of 532 nm, using open aperture Z-scan technique. The sample exhibits reversible saturable absorption (RSA), which is found to depend on excitation fluence. RSA is due to the enhanced absorption resulting from the electron dynamics in nano-crystallites. |
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AbstractList | Vibrational state side-band spectral analysis of silica matrices, doped with ZnSe/[Eu.sup.3+] ions, associated with the excitation transition [sup.7][F.sub.0] → [sup.5][D.sub.2] is used to analyze the local asymmetry of the rare earth ions in the glass host. The large inhomogeneous linewidth for the ZnSe co-doped samples indicates the wide distribution of the [Eu.sup.3+] ions in the matrix and is related to the flexibility of the local glass network. The fluorescence spectra reveal that the intensity of the characteristic emission of europium increases considerably in the presence of ZnSe particles. This phenomenon can be explained by the energy transfer resulting from electron-hole recombination in the ZnSe to the rare earth ion. Nonlinear optical absorption of the sample is also investigated at a wavelength of 532 nm, using open aperture Z-scan technique. The sample exhibits reversible saturable absorption (RSA), which is found to depend on excitation fluence. RSA is due to the enhanced absorption resulting from the electron dynamics in nano-crystallites. Vibrational state side-band spectral analysis of silica matrices, doped with ZnSe/[Eu.sup.3+] ions, associated with the excitation transition [sup.7][F.sub.0] → [sup.5][D.sub.2] is used to analyze the local asymmetry of the rare earth ions in the glass host. The large inhomogeneous linewidth for the ZnSe co-doped samples indicates the wide distribution of the [Eu.sup.3+] ions in the matrix and is related to the flexibility of the local glass network. The fluorescence spectra reveal that the intensity of the characteristic emission of europium increases considerably in the presence of ZnSe particles. This phenomenon can be explained by the energy transfer resulting from electron-hole recombination in the ZnSe to the rare earth ion. Nonlinear optical absorption of the sample is also investigated at a wavelength of 532 nm, using open aperture Z-scan technique. The sample exhibits reversible saturable absorption (RSA), which is found to depend on excitation fluence. RSA is due to the enhanced absorption resulting from the electron dynamics in nano-crystallites. PACS Nos: 78, 79, 81 Nous utilisons une analyse spectrale de la bande lateerale de l'etat vibrationnel dans une matrice de silice dopee aux ions ZnSe/[Eu.sup.3+] associeea l'excitation de transition [sup.7][F.sub.0]?[sup.5][D.sub.2], afin d'analyser l'asymetrie locale des ions de terre rare dans le verre hote. La grande largeur de bande inhomogene pour les echantillons dopes de ZnSe indique une large distribution des ions [Eu.sup.3+] dans la matrice et est relieeea la flexibilite du reseau de verre local. Le spectre de fluorescence revele que l'intensite d'emission caracteristique d'europium augmente considerablement en presence de particules de ZnSe. Ce phenomene peut s'expliquer comme dfl au transfert d'energie resultant de la recombinaison electron-trou dans le ZnSe vers l'ion terre rare. Nous etudions l'absorption optique non lineeaire a la longueur d'onde de 532 nm en utilisant une technique z-scan. L'eechantillon montre une absorption saturable reversible (RSA) que nous trouvons dependre du debit radiatif d'excitation. La RSA est due a une absorption accrue qui resulte de la dynamique electronique dans les nano cristallites. [Traduit par la Redaction] |
Audience | Academic |
Author | Unnikrishnan, N.V Kumar, K.V. Arun Nampoori, V.P.N Mathew, Siby Sudarsanakumar, C |
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Title | Local symmetry and Z-scan analysis of ZnSe/[Eu.sup.3+] doped sol-gel silica hosts |
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