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Design and Modeling of Light Emitting Nano-Pixel Structure (LENS) for High Resolution Display (HRD) in a Visible Range

机译:可见范围中高分辨率显示(HRD)发光纳米像素结构(镜头)的设计与建模

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摘要

LENS (Light Emitting Nano-pixel Structure), a new nano-metric device, was designed, simulated, and modeled for feasibility analysis, with the challenge of combining high resolution and high brightness for display, essentially adapted for Augmented Reality (AR) and Virtual Reality. The device is made of two parts: The first one is a reflective nano-cone Light Emitting Device (LED) structure to reduce the Total Internal Reflection effects (TIR), and to enable improved light extraction efficiency. The second part is a Compound Parabolic Concentrator (CPC) above the nano-LED to narrow the outgoing light angular distribution so most of the light would be “accepted” by an imaging system. Such a way is drastically limiting any unnecessary light loss. Our simulations show that the total light intensity gain generated by each part of the pixel is at least 3800% when compared to a typical flat LED. It means that, for the same electrical power consumption, the battery life duration is increased by 38. Furthermore, this improvement significantly decreases the display thermal radiation by at least 300%. Since pixel resolution is critical to offer advanced applications, an extensive feasibility study was performed, using the LightTools software package for ray tracing optimization. In addition to the simulation results, an analytical model was developed. This new device holds the potential to change the efficiency for military, professional and consumer applications, and can serve as a game changer.
机译:LENS(发光纳米像素结构),一个新的纳米度量装置,被设计,模拟和建模的可行性分析,用结合高分辨率和用于显示高亮度的,基本上适合于增强现实(AR)的挑战和虚拟现实。该装置由两个部分组成:第一个是反射纳米锥体发光器件(LED)的结构,以减少全内反射效应(TIR),并且使提高的光提取效率。第二部分是复合抛物面聚光器(CPC)以上由成像系统纳米LED,以缩小的出射光的角度分布,从而光的大部分将被“接受”。这样的方式急剧限制任何不必要的光损失。我们的模拟显示,相比于典型的平坦的LED在由所述像素的每个部分产生的总体光强度的增益为至少3800%。这意味着,对于相同的电功率消耗,电池的寿命持续时间增加38此外,这种改善显著降低通过至少300%的显示的热辐射。由于像素分辨率关键是要提供先进的应用,进行了广泛的可行性研究,使用的LightTools软件包进行光线追踪优化。除了模拟结果,分析模型。这种新的设备保持有可能改变效率的军事,专业和消费类应用程序,并可以作为一个改变游戏规则。

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