概括
这项研究展示了一种全纤维合器,用于放大轨道角动量 (OAM) 模式. 这种新型设备可以实现高效的送和低损失的信号传输,推进光纤通信系统.
科学领域:
- 光学工程是指光学工程.
- 电信 电信服务 电信服务 电信服务
- 光子学是指光子学的使用方法.
背景情况:
- 轨道角动量 (OAM) 复合提供了增加光纤通信容量的潜力.
- 在全纤维格式中有效地放大OAM模式仍然是一个重大挑战.
研究的目的:
- 开发和演示一个全纤维合器,以高效地送和放大OAM模式.
- 为了实现高容量的模态分割多重复合 (MDM) 光纤通信系统.
主要方法:
- 通过侧面抛光和粘合环芯合纤维 (RC-EDF) 和单模纤维 (SMF) 来制造合器.
- 优化相匹配条件,以实现高效的976nm合.
- 在宽带波长范围内对1至3级OAM模式的插入损失的表征.
主要成果:
- 实现了高合效率 (>90%) 进入RC-EDF.
- 在1530-1565 nm的OAM信号模式 (1st-3rd order) 中,已经证明了低插入损失 (<0.58 dB).
- 合器作为波长分割多重复合装置运行.
结论:
- 提出的侧抛光接合器技术有效地放大了高阶OAM模式.
- 这种全光纤的方法是未来高容量MDM光纤通信系统的关键推动因素.
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