Defects of the type of VK and Pb+ centres were created in CsI:Pb under the 4.03 eV XeCl laser line irradiation at 10 K. After irradiation, the self-trapped and localized exciton emission excited by the same XeCl laser line was observed as a result of the recombination of electrons, optically released from Pb+, with the VK centres. A strongly superlinear dependence of the emission intensity on the excitation intensity was found for the 3.65 eV emission of the self-trapped exciton. A much weaker superlinearity was observed for the visible localized exciton emission. Optical amplification of the exciton emission was considered as the most probable reason of the observed phenomenon. At 10 K, optical gain was calculated for the self-trapped exciton emission.

Stimulated Self-trapped Exciton Emission in CsI:Pb

Fabeni P;Pazzi GP;
2003

Abstract

Defects of the type of VK and Pb+ centres were created in CsI:Pb under the 4.03 eV XeCl laser line irradiation at 10 K. After irradiation, the self-trapped and localized exciton emission excited by the same XeCl laser line was observed as a result of the recombination of electrons, optically released from Pb+, with the VK centres. A strongly superlinear dependence of the emission intensity on the excitation intensity was found for the 3.65 eV emission of the self-trapped exciton. A much weaker superlinearity was observed for the visible localized exciton emission. Optical amplification of the exciton emission was considered as the most probable reason of the observed phenomenon. At 10 K, optical gain was calculated for the self-trapped exciton emission.
2003
Istituto di Fisica Applicata - IFAC
126
665
669
Isolanti
Eccitoni
Luminescenza stimola
Centri di colore
Alogenuri alcalini
La ricerca di nuovi materiali per laser accordabili nell'ultravioletto e' da anni un obbiettivo che sta impegnando ricercatori in tutto il mondo ed i risultati positivi sono un numero limitato. Pertanto la possibilita' di impiegare a tal fine i cristalli di CsI:Pb, pur con il limite di funzionare a bassa temperatura, rappresenta un importante contributo in questa ricerca di nuovi materiali laser.
5
info:eu-repo/semantics/article
262
Fabeni, P; Krasnikov, A; Nikl, M; Pazzi, Gp; Zazubovich, S
01 Contributo su Rivista::01.01 Articolo in rivista
none
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/22371
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