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首页> 外文期刊>IEEE journal of selected topics in quantum electronics >Combining Multicore Imaging Fiber With Matrix Addressable Blue/Green LED Arrays for Spatiotemporal Photonic Excitation at Cellular Level
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Combining Multicore Imaging Fiber With Matrix Addressable Blue/Green LED Arrays for Spatiotemporal Photonic Excitation at Cellular Level

机译:将多芯成像光纤与矩阵可寻址蓝色/绿色LED阵列相结合,以在细胞水平上进行时空光子激发

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摘要

We have developed a microscale flexible optical image projection device, integrating a matrix addressable blue/green 2-D LED array to a multicore imaging fiber. The scalable matrix addressing LED design was to enable electrical access to individual elements in the densely packed 2-D LED array. A prototype 10 $,times,$10 element array was fabricated by specific device process sequence, using deep reactive ion etching and polyimide etch-back processes for device isolation and planarization. Individual elements of the array have been operated under continuous-wave current injection up to a few kiloamperes per square centimeter suggesting uncompromised performance and robustness of the planarized device structure. The device was butt-coupled to a 30 000 pixel multicore image fiber to generate a spatiotemporal pattern of light at the output end of the fiber. As application demonstrations, selected spatiotemporal patterns of illumination have been projected either to the eye of Xenopus laevis tadpoles in studies of their developing visual system, or directly to excitable neural cells in the brain.
机译:我们已经开发了一种微型柔性光学图像投影设备,将矩阵可寻址的蓝/绿2-D LED阵列集成到多芯成像光纤上。可扩展的矩阵寻址LED设计旨在实现对密集封装的2D LED阵列中各个元素的电气访问。通过特定的器件工艺流程,使用深反应性离子刻蚀和聚酰亚胺回蚀工艺进行器件隔离和平坦化,制造出10元x 10元的原型阵列。该阵列的各个元件已经在高达每平方厘米几千安培的连续波电流注入下工作,这表明平面化器件结构的性能和坚固性不受影响。将该设备对接至3万像素多芯图像光纤,以在光纤的输出端生成光的时空图案。作为应用演示,已选择的时空照明模式已投射到非洲爪蟾t的眼睛中,以研究它们不断发展的视觉系统,或直接投射到大脑中可兴奋的神经细胞。

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