超短红外光脉冲激发二甲氨基对苯二胺-1,3-吲哚二酮类化合物的可见发光

IF 2.781
V. Gulbinas, G. Kodis, L. Valkunas
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引用次数: 3

摘要

摘要利用时间上分离的两个激发脉冲和超快泵浦激发的发光,研究了二甲氨基对苯二胺-1,3-吲哚二酮(dmai)晶体和真空蒸发膜中非线性反斯托克斯发光效应的起源,即红外激发产生的可见光区发光。探测器光谱。与先前提出的基于低能激子湮灭的发光激发模型相反,发现发光状态是通过双光子吸收通过虚和实(以1ps寿命为特征)中间态激发的。讨论了二次谐波的产生和脉冲持续时间对非线性发光的影响。激子吗?在高激发强度下观察到激子在发光态流形上的湮灭。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Visible Luminescence of Dimethylaminobenzylidene-1,3-indandione Compounds Excited by Ultrashort Infrared Light Pulses

The origin of the nonlinear anti-Stokes luminescence effect in dimethylaminobenzylidene-1,3-indandione (DMABI) crystals and vacuum-evaporated films, i.e., the luminescence in the visible spectral region created by the infrared excitation, was investigated by means of the luminescence excitation stimulated by two excitation pulses separated in time and by means of ultrafast pump?probe spectroscopy. In contrast to the earlier proposed luminescence excitation model based on the low-energy exciton annihilation, the luminescence state was found to be excited via two-photon absorption through the virtual and real (characterized by 1 ps lifetime) intermediate states. Second harmonic generation and the pulse duration effect on the nonlinear luminescence are discussed. The exciton?exciton annihilation on a luminescent state manifold was observed at high excitation intensities.

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