首页> 外文期刊>Journal of Crystal Growth >Molecular beam epitaxy of vertical-emitting microcavity lasers for the 6-8 micron spectral range operating in continuous-wave mode
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Molecular beam epitaxy of vertical-emitting microcavity lasers for the 6-8 micron spectral range operating in continuous-wave mode

机译:垂直发射微腔激光器在连续波模式下工作的6-8微米光谱范围的分子束外延

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摘要

Molecular beam epitaxial growth of continuous-wave (cw) midinfrared IV-VI vertical-cavity surface-emitting laser structures is presented. From the structures, based on high-finesse microcavities and containing PbSe as active medium, optically pumped cw laser emission is observed at very long wavelengths between 7.9 and 6.7 μ m. Stimulated emission is found up to temperatures of 100K. We achieved internal threshold pump intensities below 25W/cm(2), which is two orders of magnitude smaller than those reported so far. The observed line width of the laser emission is only 0.6nm, with a strong line width narrowing above threshold as compared to the line width of the cavity resonance. Cw Output powers are up to 4.8 mW. © 2004 Elsevier B.V. All rights reserved.
机译:提出了连续波(cw)中红外IV-VI垂直腔面发射激光器结构的分子束外延生长。从这些结构中,基于高精细微腔并包含PbSe作为活性介质,可以在7.9至6.7μm的非常长的波长处观察到光泵浦连续波激光发射。发现受激发射高达100K的温度。我们实现了低于25W / cm(2)的内部阈值泵浦强度,这比迄今为止报道的强度小两个数量级。观察到的激光发射的线宽仅为0.6nm,与腔谐振的线宽相比,强线宽变窄到阈值以上。 Cw输出功率高达4.8 mW。 &复制; 2004 Elsevier B.V.保留所有权利。

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