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Versatile Plasma Technology for UV-Visible Scene Projector

机译:适用于紫外线可见场景投影仪的通用等离子技术

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The results of testing two technologies based on gas microplasmas for the generation of UV-visible light is detailed. A microcavity device from the University of Illinois at Champaign-Urbana have been delivered with an Ar/D_2 gas mixture. Emission from the Ar/Ne as well as an Ar/D_2 eximer in the 250-400nm range, as well as argon lines in the visible and near infrared, are measured. Development of addressing arrays is discussed as is the potential of emission in other wavebands with other gas species. A 100×40 array of plasmaspheres combined with electronics capable of projecting images at 1000 Hz with 10 bits of grayscale resolution has been built and tested. This system, built by Imaging Systems Technology (IST), is capable of accepting DVI output from a HWIL system and projecting UV from a gas captured in the spheres. This array uses an argon neon gas mixture to produce UV, visible and near infrared light. Performance data discussed for both arrays include: maximum and minimum brightness, uniformity, spectral content, speed, linearity, crosstalk, resolution, and frame rate. Extensions of these technologies to larger arrays with wider spectral bandwidth for use in multispectral projectors are discussed.
机译:详细介绍了测试两种基于气体微等离子体的技术以产生UV-可见光的结果。伊利诺伊大学香槟分校的微腔设备已与Ar / D_2气体混合物一起交付。测量了Ar / Ne以及250 / 400nm范围内的Ar / D_2准分子的发射以及可见光和近红外光中的氩线。讨论了寻址阵列的开发,以及与其他气体物种一起在其他波段发射的潜力。已构建并测试了一个100×40的等离子球阵列,该阵列结合了能够以10位灰度分辨率以1000 Hz投射图像的电子设备。该系统是由Imaging Systems Technology(IST)建立的,能够接受HWIL系统的DVI输出,并能从球体中捕获的气体投射紫外线。该阵列使用氩氖气混合物产生紫外线,可见光和近红外光。为这两个阵列讨论的性能数据包括:最大和最小亮度,均匀性,光谱含量,速度,线性,串扰,分辨率和帧频。讨论了将这些技术扩展到具有更宽光谱带宽的更大阵列,以用于多光谱投影仪中。

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