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首页> 外文期刊>Applied optics >Extensible, low-chromatic-sensitivity, all-diffractive-optics relay for interconnecting optoelectronic device arrays
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Extensible, low-chromatic-sensitivity, all-diffractive-optics relay for interconnecting optoelectronic device arrays

机译:可扩展的低色度灵敏度全衍射光学继电器,用于互连光电器件阵列

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摘要

For free-space optical interconnections between optoelectronic chips to reach commercial realization, the technology must provide high-density optical channels in a simple, inexpensive, and easily, aligned package. Although point-to-point connections with microlens pairs can provide densities of several thousand channels per square centimeter, the Gaussian nature of the beams limits the connection range to a few millimeters. We propose an arrangement of microlens pairs with an intermediate relay lens that significantly increases the connection distance. This basic setup can be tiled laterally across large chips to form extensible arrays. The optical design is constructed entirely with diffractive elements because of the low chromatic sensitivity over a range of approximately±10% around the design wavelength. We derive the lateral positioning error at the image by using a simple ray trace, and we show the effect of Gaussian beams. We experimentally demonstrate the low chromatic sensitivity for a system with an interconnection distance of 64 mm. Finally, we demonstrate the interconnection of two linear arrays of multimode fibers with two adjacent channels operating at data rates of hundreds of megabits per second. #1998 Optical Society of America OCIS codes: 050.1970, 200.4650, 200.2610.
机译:为了实现光电芯片之间的自由空间光学互连,以实现商业化,该技术必须以简单,便宜且易于对齐的封装提供高密度的光通道。尽管使用微透镜对的点对点连接可以提供每平方厘米数千个通道的密度,但是光束的高斯性质将连接范围限制在几毫米。我们提出了一种带有中间中继透镜的微透镜对的布置,可以大大增加连接距离。可以将这种基本设置横向铺在大芯片上,以形成可扩展的阵列。光学设计完全由衍射元件构成,这是因为在设计波长附近大约±10%的范围内的低色灵敏度。我们通过使用简单的射线轨迹得出图像上的横向定位误差,并展示了高斯光束的效果。我们通过实验证明了互连距离为64 mm的系统的低色度灵敏度。最后,我们演示了多模光纤的两个线性阵列与两个相邻通道的互连,两个相邻通道以每秒数百兆的数据速率运行。 #1998美国光学学会OCIS编码:050.1970、200.4650、200.2610。

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