LED-pumped Er: Cr: YSGG

Lisa Lopez, F. Druon, Patrick Georges, F. Balembois
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引用次数: 0

摘要

Er:Cr:YSGG是一种众所周知的晶体,其激光发射波长为2.79 μm[1],可用于医疗应用,特别是牙科[2]。Cr和Er之间的能量转移允许用闪光灯泵送这种晶体。为了寻找在SWIR中发射的新光源,我们建议用一种新的泵浦方式来重新审视这种晶体:用led。Er:Cr:YSGG一般在2.79 μm激光发射的${}^{4}\mathrm{I}_{11 / 2}{}^{-4} \mathrm{I}_{13 / 2}$跃迁上工作。它的${}^{4}\mathrm{I}_{13 / 2}{}^{-4} \mathrm{I}_{15 / 2}$在1.6 $\mu \mathrm{m}$附近的跃迁也可以用来研究自发辐射。事实上,这个波长范围对于用于InGaAs相机的高亮度、频谱宽带和非相干SWIR光源来说是有趣的。为了有效地收集自发辐射,可以使用发光集中器(LC)的几何形状[3]。本工作的目的是研究Er:Cr:YSGG在这两种转变上的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
LED-pumped Er:Cr:YSGG
Er:Cr:YSGG is a well know crystal with laser emission at 2.79 μm [1] useful for medical applications and particularly for dentistry [2]. Energy transfer between Cr and Er allows to pump this crystal with flashlamps. In a search for new sources emitting in the SWIR, we propose to revisit this crystal with a new way of pumping: with LEDs. Er:Cr:YSGG generally operates on its ${ }^{4} \mathrm{I}_{11 / 2}{ }^{-4} \mathrm{I}_{13 / 2}$ transition for laser emission at 2.79 μm. Its ${ }^{4} \mathrm{I}_{13 / 2}{ }^{-4} \mathrm{I}_{15 / 2}$ transition around 1.6 $\mu \mathrm{m}$ can also be investigated for spontaneous emission. Indeed, this wavelength range is interesting for high-brightness, spectrally broadband and incoherent sources in the SWIR adapted for InGaAs cameras. In order to collect the spontaneous emission efficiently, a geometry of luminescent concentrator (LC) can be used [3]. The purpose of this work is to investigate the performance of Er:Cr:YSGG on both transitions.
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CiteScore
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