首页> 外文学位 >Simultaneous polarization-insensitive phase-space trans-multiplexing and wavelength multicasting via cross-phase modulation in a photonic crystal fiber at 10 GBd.
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Simultaneous polarization-insensitive phase-space trans-multiplexing and wavelength multicasting via cross-phase modulation in a photonic crystal fiber at 10 GBd.

机译:在10 GBd的光子晶体光纤中,通过交叉相位调制同时进行偏振不敏感的相空间多路复用和波长多播。

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摘要

This thesis investigates the all-optical combination of amplitude and phase modulated signals into one unified multi-level phase modulated signal, utilizing the Kerr nonlinearity of cross-phase modulation (XPM). Predominantly, the first experimental demonstration of simultaneous polarization-insensitive phase-transmultiplexing and multicasting (PI-PTMM) will be discussed. The PI-PTMM operation combines the data of a single 10-Gbaud carrier-suppressed return-to-zero (CSRZ) on-off keyed (OOK) pump signal and 4x10-Gbaud return-to-zero (RZ) binary phase-shift keyed (BPSK) probe signals to generate 4x10-GBd RZ-quadrature phase-shift keyed (QPSK) signals utilizing a highly nonlinear, birefringent photonic crystal fiber (PCF). Since XPM is a highly polarization dependent nonlinearity, a polarization sensitivity reduction technique was used to alleviate the fluctuations due to the remotely generated signals' unpredictable states of polarization (SOP). The measured amplified spontaneous emission (ASE) limited receiver sensitivity optical signal-to-noise ratio (OSNR) penalty of the PI-PTMM signal relative to the field-programmable gate array (FPGA) pre-coded RZ-DQPSK baseline at a forward-error correction (FEC) limit of 10-3 BER was ≈ 0.3 dB. In addition, the OSNR of the remotely generated CSRZ-OOK signal could be degraded to ≈ 29 dB/0.1nm, before the bit error rate (BER) performance of the PI-PTMM operation began to exponentially degrade. A 138-km dispersion-managed recirculating loop system with a 100-GHz, 13-channel mixed-format dense-wavelength-division multiplexed (DWDM) transmitter was constructed to investigate the effect of metro/long-haul transmission impairments. The PI-PTMM DQPSK and the FPGA pre-coded RZ-DQPSK baseline signals were transmitted 1,900 km and 2,400 km in the nonlinearity-limited transmission regime before reaching the 10-3 BER FEC limit. The relative reduction in transmission distance for the PI-PTMM signal was due to the additional transmitter impairments in the PCF that interact negatively with the transmission fiber.
机译:本文利用交叉相位调制(XPM)的Kerr非线性将幅度和相位调制信号的全光组合研究成一个统一的多级相位调制信号。首先,将讨论同时偏振不敏感的相转换和多播(PI-PTMM)的第一个实验演示。 PI-PTMM操作结合了单个10 Gbaud载波抑制的归零(CSRZ)开关键(OOK)泵浦信号和4x10 Gbaud归零(RZ)二进制相移的数据键控(BPSK)探测信号,利用高度非线性的双折射光子晶体光纤(PCF)生成4x10 GBd RZ正交相移键控(QPSK)信号。由于XPM是高度依赖极化的非线性,因此使用极化灵敏度降低技术来缓解由于远程生成的信号的不可预测的极化状态(SOP)而引起的波动。 PI-PTMM信号相对于现场可编程门阵列(FPGA)预编码RZ-DQPSK基线的实测放大自发发射(ASE)受限接收器灵敏度光信噪比(OSNR)损失10-3 BER的纠错(FEC)限制为≈ 0.3分贝。另外,远程生成的CSRZ-OOK信号的OSNR可能会降低到≈ 29 dB / 0.1nm,然后PI-PTMM操作的误码率(BER)性能开始呈指数级下降。构建了一个138公里分散管理的循环环路系统,该环路系统具有100 GHz,13通道混合格式的密集波分复用(DWDM)发射机,以研究城域/长途传输损害的影响。在达到10-3 BER FEC限制之前,PI-PTMM DQPSK和FPGA预编码的RZ-DQPSK基线信号在非线性受限的传输方式下分别传输了1,900 km和2,400 km。 PI-PTMM信号的传输距离相对减少是由于PCF中与传输光纤产生负面影响的其他传输器损伤。

著录项

  • 作者

    Cannon, Brice M.;

  • 作者单位

    University of Maryland, Baltimore County.;

  • 授予单位 University of Maryland, Baltimore County.;
  • 学科 Electrical engineering.;Optics.
  • 学位 Ph.D.
  • 年度 2015
  • 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

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