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Electrical injection schemes for nanolasers

机译:用于纳米液的电气注射方案

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The performance of injection schemes among recently demonstrated electrically pumped photonic crystal nanolasers has been investigated numerically. The computation has been carried out at room temperature using a commercial semiconductor simulation software. For the simulations two electrical injection schemes have been compared: vertical pi-n junction through a current post structure as in~1 and lateral p-i-n junction with either uniform material as in~2 or with a buried heterostructure (BH) as in~3. To allow a direct comparison of the three schemes the same active material composition consisting of 3 InGaAsP QWs on an InP substrate has been chosen for the modeling. In the simulations the main focus is on the electrical and optical properties of the nanolasers i.e. electrical resistance, threshold voltage, threshold current and wallplug efficiency. In the current flow evaluation the lowest threshold current has been achieved with the lateral electrical injection through the BH; while the lowest resistance has been obtained from the current post structure even though this model shows a higher current threshold because of the lack of carrier confinement. Final scope of the simulations is the analyses of advantages and disadvantages of different electrical injection schemes for the development of the optimal device design for the future generation of electrically pumped nanolasers for terabit communication.
机译:在数值上研究了最近说明的电泵浦光子晶体纳米液体中的注射方案的性能。使用商业半导体仿真软件在室温下进行计算。对于模拟,已经进行了两种电气注射方案:通过当前柱结构的垂直pi-n结,如〜1和横向p-i-n结,其具有均匀的材料,如〜2或掩埋异质结构(bh)如〜3中。为了允许三种方案的直接比较,选择了由InP衬底上的3个InGaASP QWS组成的相同活性材料组合物用于建模。在模拟中,主焦点是纳米溶解器的电气和光学性质,即电阻,阈值电压,阈值电流和壁图效率。在当前的流量评估中,通过通过BH的横向电气注入来实现最低阈值电流;虽然由于缺乏载体限制,但是,即使该模型显示出更高的电流阈值,也是从当前的后结构获得的最低电阻。模拟的最终范围是对不同电气注射方案的优点和缺点的分析,用于开发未来产生电动泵送纳米纳米纳米制剂的最佳装置设计。

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