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Updated: May 15, 2026

16:20
Hyperpolarized Xenon for NMR and MRI Applications
Published on: September 6, 2012
19.5K
概括
这项研究证明了使用集成薄膜酸 (TFLN) 调制器的新极化分裂复杂化 (PDM) 链接. 该系统实现了高速跟踪和稳定的性能,数据中心的容量翻了一番.
科学领域:
- 光子学和光学通信技术
- 综合光子学 综合光子学
- 数据中心技术 数据中心技术
背景情况:
- 极化分裂复杂化 (PDM) 对于增加光通信能力至关重要.
- 现有的PDM系统经常面临着极化波动和复杂的解复的挑战.
- 薄膜酸 (TFLN) 为高速和紧的光子设备提供了一个有前途的平台.
研究的目的:
- 提出并通过实验证明一种新的PDM链接.
- 将双极化TFLN调制器与芯片上的自动极化脱多重复合器集成在一起.
- 为了评估PDM链接在动态极化条件下的性能.
主要方法:
- 使用集成的双极化TFLN调制器来生成信号.
- 采用了芯片上的自动偏振解复合器来进行信号分离.
- 测试了系统的跟踪速度和位误率 (BER) 在各种极化编码速率 (SR) 下.
主要成果:
- 实现了80Gb/s的PDM链接,最大跟踪速度为600rad/s,BER低于2.4 × 10-2.
- 在100rad/s SR下维持了大约1.7×10−3的BER30分钟.
- 展示了TFLN平台的高速调制和快速极化控制能力.
结论:
- 集成的基于TFLN的PDM链接有效地通过直接检测将每波长的容量翻一番.
- 该系统在存在偏振波动的情况下表现强.
- 这项技术在数据中心的短距离光通信中具有显著的潜力.
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