首页> 外文会议>Organic Light Emitting Materials and Devices X; Proceedings of SPIE-The International Society for Optical Engineering; vol.6333 >Influence of electronic properties on the threshold behaviour of organic laser diode structures
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Influence of electronic properties on the threshold behaviour of organic laser diode structures

机译:电子性能对有机激光二极管结构阈值行为的影响

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By employing a combined optical/electronic model, we investigate the effect of electronic properties on the performance of three layer organic semiconductor structures, which are a potential candidate for future electrically pumped organic laser diodes. The drift-diffusion equations which describe particle transport are coupled to the spatially inhomogeneous laser rate equations to solve for the dynamics of the excited state and photon population in the laser cavity. Due to the high current densities considered, high particle densities occur, which implies that annihilation processes between the different particle species have to be considered. On the optical side, we take into account the absorption of the metal electrodes required for current injection to obtain the intensity profiles of the guided modes.rnOur calculations show that the inclusion of annihilation processes leads to a strong dependence of the laser threshold on the charge carrier mobilities, in contrast to the situation when exciton annihilation is neglected. We observe optimum values for the charge carrier mobilities in the emission layer regarding the threshold current and power density. On the other hand, an increase of the mobilities in the transport layers leads to a reduction of these quantities. The threshold voltage decreases for increasing mobilities, regardless of the layer in which the mobility is increased. For optimised values, we obtain a threshold current density of j_(thr) = 267 A/cm~2 with annihilation processes taken into account.rnThe presented results can serve as guidelines in the search for material combinations and devices structures suitable for electrically pumped organic semiconductor laser diodes.
机译:通过采用组合的光学/电子模型,我们研究了电子特性对三层有机半导体结构性能的影响,这是未来电泵浦有机激光二极管的潜在候选者。描述粒子传输的漂移扩散方程与空间不均匀的激光速率方程耦合,以解决激光腔中激发态和光子种群的动力学问题。由于考虑了高电流密度,因此出现了高颗粒密度,这意味着必须考虑不同颗粒种类之间的an灭过程。在光学方面,我们考虑了电流注入所需的金属电极的吸收,以获得导模的强度分布。我们的计算表明,of没过程的引入导致激光阈值对电荷的强烈依赖性与忽略激子an灭的情况相反。我们观察到有关阈值电流和功率密度的发光层中载流子迁移率的最佳值。另一方面,运输层中迁移率的增加导致这些量的减少。阈值电压随着迁移率的增加而降低,而与迁移率增加的层无关。为获得最佳值,我们在考虑了an灭过程的情况下获得了j_(thr)= 267 A / cm〜2的阈值电流密度.rn本结果可为寻找适合电泵有机材料的材料组合和器件结构提供指导半导体激光二极管。

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