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Alignment tolerance study between VCSEL arrays and a new kind of ordered fiber array technology considered for two-dimensional parallel optical interconnects.

机译:VCSEL阵列之间的对准公差研究和一种考虑用于二维平行光学互连的新型有序光纤阵列技术。

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摘要

There is a need for two dimensional parallel optical interconnects for large bandwidth transfer of data over a distance ranging from tens of centimeters to a few meters. Optical transmission of data through "free-space" using imaging or diffractive elements would fulfil this need for very large bandwidth and high throughput density, but is not yet a practical approach. A commercially viable approach in the shorter term is to use optical fiber technologies as the communication medium. Fiber image-guides can be mass produced and are easy to align with the source but have insertion losses of the order of -3 dB. Ordered fiber arrays can be constructed using the same technology as fiber image-guides, and can have lower insertion losses but at the cost of reduced alignment tolerances.;We present a model for the numerical calculation of the insertion loss in ordered fiber arrays when coupling light from an array of VCSELs of equal dimensions. We then apply this model to study the impact of alignment on insertion losses as a function of the different fiber array parameters: core radius and of the individual fiber elements, and the dimensions of the array. We conclude that the alignment tolerances for multimode ordered fiber arrays should be compatible with present-day connector technology.
机译:需要二维并行光学互连,以在几十厘米到几米的距离上进行大带宽的数据传输。通过使用成像或衍射元件通过“自由空间”进行数据的光学传输将满足对非常大的带宽和高吞吐量密度的这种需求,但是尚不实用。短期内商业上可行的方法是使用光纤技术作为通信介质。光纤图像导管可以批量生产,易于与光源对准,但插入损耗约为-3 dB。可以使用与光纤图像波导相同的技术来构造有序光纤阵列,并可以降低插入损耗,但以降低对准公差为代价。我们提出了一个模型,用于耦合时有序光纤阵列的插入损耗的数值计算来自大小相等的VCSEL阵列的光。然后,我们使用该模型来研究对准对插入损耗的影响,该影响是不同光纤阵列参数的函数:纤芯半径和各个光纤元件的直径以及阵列的尺寸。我们得出结论,多模有序光纤阵列的对准公差应与当今的连接器技术兼容。

著录项

  • 作者

    Mathieu, Frederick.;

  • 作者单位

    McGill University (Canada).;

  • 授予单位 McGill University (Canada).;
  • 学科 Engineering Electronics and Electrical.
  • 学位 M.Eng.
  • 年度 2000
  • 页码 106 p.
  • 总页数 106
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:47:29

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