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Active Control of Photon Recycling for TunableOptoelectronic Materials

机译:光子回收用于可调谐的主动控制光电材料

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摘要

Optoelectronic materials are the backbone of today’s high-tech industry. Tocustomize their response, one can directly modify the atomic arrangement,chemical composition, lattice strain, or doping of the semiconductor. However,these processes frequently cause undesirable effects resulting frominduced defects. Here, a novel concept is demonstrated to actively tune theoptoelectronic response of a material through tailored photon recycling.Without altering the material’s intrinsic structure, doping, or temperature,the reabsorption of emitted photons within GaAs is modulated to control itscarrier density. This approach is used to create a diode that can change itsemission wavelength, a solar cell with improved open-circuit voltage, and anactively controlled, gate-free current modulator. These results represent a newplatform to enable materials with tailored optoelectronic response based onphotonic manipulation rather than semiconductor engineering.
机译:光电材料是当今高科技产业的骨干。至自定义他们的响应,可以直接修改原子排列,化学成分,晶格菌株或半导体掺杂。然而,这些过程经常导致来自的不良影响诱导缺陷。在这里,证明了一种新颖的概念来积极调整通过量定制光子回收材料的光电响应。不改变材料的内在结构,掺杂或温度,调制GaAs内发射的光子的重新吸收以控制其载体密度。这种方法用于创建可以改变其的二极管发射波长,一个具有改善的开路电压的太阳能电池,以及积极控制,无线电流调制器。这些结果代表了一个新的基于的平台实现具有量身定制的光电响应的材料光子操纵而不是半导体工程。

著录项

  • 来源
    《Advanced Optical Materials》 |2018年第7期|1701323.1-1701323.7|共7页
  • 作者单位

    Institute for Research in Electronics and Applied PhysicsUniversity of MarylandCollege Park MD 20740 USA Department of Electrical and Computer EngineeringUniversity of MarylandCollege Park MD 20740 USA;

    Institute for Research in Electronics and Applied PhysicsUniversity of MarylandCollege Park MD 20740 USA Department of Materials Science and EngineeringCollege Park MD 20740 USA;

    Institute for Research in Electronics and Applied PhysicsUniversity of MarylandCollege Park MD 20740 USA Department of Electrical and Computer EngineeringUniversity of MarylandCollege Park MD 20740 USA;

    Institute for Research in Electronics and Applied PhysicsUniversity of MarylandCollege Park MD 20740 USA Department of PhysicsUniversity of MarylandCollege Park MD 20740 USA;

    Institute for Research in Electronics and Applied PhysicsUniversity of MarylandCollege Park MD 20740 USA Department of Electrical and Computer EngineeringUniversity of MarylandCollege Park MD 20740 USA;

    Institute for Research in Electronics and Applied PhysicsUniversity of MarylandCollege Park MD 20740 USA Department of Electrical and Computer EngineeringUniversity of MarylandCollege Park MD 20740 USA;

    Institute for Research in Electronics and Applied PhysicsUniversity of MarylandCollege Park MD 20740 USA Department of Materials Science and EngineeringCollege Park MD 20740 USA;

    Institute for Research in Electronics and Applied PhysicsUniversity of MarylandCollege Park MD 20740 USA Department of Electrical and Computer EngineeringUniversity of MarylandCollege Park MD 20740 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    bandgap; light emitting diodes; optoelectronics; photon recycling; solarcells;

    机译:带隙;发光二极管;光电子;光子回收;太阳的细胞;

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