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Quantum dot vertical-cavity surface-emitting lasers covering the ‘green gap’

机译:覆盖绿色间隙的量子点垂直腔表面发射激光器

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摘要

Semiconductor vertical-cavity surface-emitting lasers (VCSELs) with wavelengths from 491.8 to 565.7 nm, covering most of the ‘green gap’, are demonstrated. For these lasers, the same quantum dot (QD) active region was used, whereas the wavelength was controlled by adjusting the cavity length, which is difficult for edge-emitting lasers. Compared with reports in the literature for green VCSELs, our lasers have set a few world records for the lowest threshold, longest wavelength and continuous-wave (CW) lasing at room temperature. The nanoscale QDs contribute dominantly to the low threshold. The emitting wavelength depends on the electron–photon interaction or the coupling between the active layer and the optical field, which is modulated by the cavity length. The green VCSELs exhibit a low-thermal resistance of 915 kW−1, which benefits the CW lasing. Such VCSELs are important for small-size, low power consumption full-color displays and projectors.
机译:演示了半导体垂直腔表面发射激光器(VCSEL),其波长为491.8至565.7 nm,覆盖了大部分“绿色间隙”。对于这些激光器,使用了相同的量子点(QD)有源区,而波长是通过调整腔长来控制的,这对于边缘发射激光器是困难的。与绿色VCSEL的文献报道相比,我们的激光器在室温下具有最低阈值,最长波长和连续波(CW)激光的激光,创造了一些世界纪录。纳米级量子点占主导地位的低阈值。发射波长取决于电子与光子的相互作用或有源层与光场之间的耦合,这由腔的长度进行调制。绿色的VCSEL具有915 kW -1 的低热阻,这有利于CW激光发射。此类VCSEL对于小尺寸,低功耗的全色显示器和投影仪而言非常重要。

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