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Spectrally phase coded optical code division multiple access (O-CDMA) system and spectral line-by-line pulse shaping.

机译:频谱相位编码的光码分多址(O-CDMA)系统和频谱逐行脉冲整形。

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摘要

Multiple access techniques are required to meet the demand for high-speed and large-capacity communications in optical networks, which allow multiple users to share the fiber bandwidth. Optical code-division multiple-access (O-CDMA) is receiving increased attention due to its potential applications for local area optical networks. We experimentally investigate an ultrashort pulse O-CDMA scheme based on spectral phase encoding and decoding of coherent mode-locked laser pulses. Strong interference suppression is achieved by using a novel, ultrasensitive nonlinear optical intensity discriminator based on second harmonic generation (SHG) in a periodically-poled lithium niobate (PPLN) waveguide. We have experimentally demonstrated/investigated: (1) 4-user, 2.5 Gb/s and 10 Gb/s O-CDMA system with ultra-low power (∼30 fJ/bit); (2) reconfigurable all-optical code translation in our O-CDMA testbed; (3) 50 km single mode fiber (SMF) transmission experiments for O-CDMA system; (4) security issues in O-CDMA networks.; We have built the first grating-based spectral line-by-line pulse shaper and demonstrated many functionalities: (1) demonstrated line-by-line pulse shaping experiments in which the individual spectral lines present in the output of a mode-locked laser with ∼10 GHz mode spacing are resolved. The shaped pulses overlap in time, which leads to a new way to observe fluctuations of the comb-offset frequency in the time domain; (2) demonstrated line-by-line pulse shaping control for optical arbitrary waveform generation (O-AWG); (3) demonstrated tunable return-to-zero signal generation, return-to-zero to non-return-to-zero format conversion; (4) demonstrated complete intensity and phase measurement of optical pulses using spectral line-by-line pulse shaping; (5) in addition to utilizing the spectral lines generated from a mode-locked laser, we also applied line-by-line pulse shaping control on spectral lines generated from a phase modulated continuous wave (CW) laser. Based on these apparatus, we showed various optical processing functionalities, including CW-to-pulse conversion, width and wavelength tunable return-to-zero pulse generation, pulse-to-CW conversion, wavelength conversion and microwave waveform synthesis.
机译:需要多种接入技术来满足光网络中对高速和大容量通信的需求,这允许多个用户共享光纤带宽。光码分多址(O-CDMA)由于其在局域网光网络中的潜在应用而受到越来越多的关注。我们实验研究基于相干锁模激光脉冲的频谱相位编码和解码的超短脉冲O-CDMA方案。通过在周期极化铌酸锂(PPLN)波导中使用基于二次谐波(SHG)的新型超灵敏非线性光学强度鉴别器,可以实现强大的干扰抑制能力。我们已经通过实验证明/进行了研究:(1)具有超低功耗(〜30 fJ / bit)的4用户,2.5 Gb / s和10 Gb / s O-CDMA系统; (2)在我们的O-CDMA测试平台中可重新配置的全光代码转换; (3)O-CDMA系统50公里单模光纤(SMF)传输实验; (4)O-CDMA网络中的安全性问题。我们建立了第一台基于光栅的光谱逐行脉冲整形器,并演示了许多功能:(1)演示了逐行脉冲整形实验,其中在锁模激光器的输出中存在单独的光谱线,解析了〜10 GHz模式间隔。整形脉冲在时间上重叠,这导致了一种在时域中观察梳齿偏移频率波动的新方法。 (2)演示了用于产生光学任意波形(O-AWG)的逐行脉冲整形控制; (3)演示了可调的归零信号生成,归零到非归零格式转换; (4)演示了使用频谱逐线脉冲整形对光脉冲进行完整的强度和相位测量; (5)除了利用锁模激光器产生的谱线之外,我们还对由调相连续波(CW)激光器产生的谱线进行逐行脉冲整形控制。基于这些设备,我们展示了各种光学处理功能,包括CW到脉冲转换,宽度和波长可调的归零脉冲生成,脉冲到CW转换,波长转换和微波波形合成。

著录项

  • 作者

    Jiang, Zhi.;

  • 作者单位

    Purdue University.;

  • 授予单位 Purdue University.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 176 p.
  • 总页数 176
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;
  • 关键词

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