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Phonon-assisted lasing in ZnO microwires at room temperature

机译:室温下ZnO微丝中的声子辅助激光发射

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We report on room temperature phonon-assisted whispering gallery mode (WGM) lasing in ZnO microwires. For WGM laser action on the basis of the low gain phonon scattering process high quality resonators with sharp corners and smooth facets are prerequisite. Above the excitation threshold power P of typically 100 kW/cm, the recombination of free excitons under emission of two longitudinal optical phonons provides sufficient gain to overcome all losses in the microresonator and to result in laser oscillation. This threshold behavior is accompanied by a distinct change of the far and near field emission patterns, revealing the WGM related nature of the lasing modes. The spectral evolution as well as the characteristic behavior of the integrated photoluminescence intensity versus the excitation power unambiguously proves laser operation. Polarization-resolved measurements show that the laser emission is linear polarized perpendicular to the microwire axis (TE).
机译:我们报告了在ZnO微丝中室温声子辅助的耳语回廊模式(WGM)激射。对于基于低增益声子散射过程的WGM激光作用,具有尖角和平滑刻面的高质量谐振器是先决条件。在典型的100 kW / cm的激发阈值功率P之上,两个纵向光学声子发射时自由激子的重组提供了足够的增益,以克服微谐振器中的所有损耗并导致激光振荡。该阈值行为伴随着远场和近场发射模式的明显变化,揭示了激光模式与WGM相关的性质。光谱演化以及积分光致发光强度相对于激发功率的特征行为清楚地证明了激光的运行。偏振分辨测量结果表明,激光发射是垂直于微丝轴(TE)的线性偏振光。

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