Title :
Photonic Generation of a Phase-Coded Microwave Waveform With Ultrawide Frequency Tunable Range
Author :
Liang Gao ; Xiangfei Chen ; Jianping Yao
Author_Institution :
Microwave Photonics Res. Lab., Univ. of Ottawa, Ottawa, ON, Canada
Abstract :
Photonic generation of a phase-coded microwave waveform with ultrawide frequency tunable range using two polarization modulators (PolMs) is proposed and experimentally demonstrated. The first PolM (PolM1) is used to control the polarization direction of a linearly polarized light wave to have an angle of 45° or 135 ° relative to one principal axis of the second PolM (PolM2). PolM2 operates in conjunction with a polarization controller and a polarizer as an equivalent Mach-Zehnder modulator (MZM). Depending on the polarization direction of the incident light wave, the equivalent MZM is biased at the opposite slopes of the transfer function. Thus, by applying a binary coding signal with a switching voltage of Vπ to PolM1, a π phase-coded microwave waveform is generated. The key significance of the technique is that a phase-coded microwave waveform with an ultrawide frequency tunable range can be generated. The technique is experimentally evaluated. The generation of a frequency-tunable phase-coded microwave waveform with a frequency at 10, 20, 30, and 40 GHz is demonstrated.
Keywords :
light polarisation; optical modulation; optical pulse generation; Mach-Zehnder modulator; binary coding signal; frequency 10 GHz; frequency 20 GHz; frequency 30 GHz; frequency 40 GHz; frequency-tunable phase-coded microwave waveform; linearly polarized light wave; photonic generation; polarization controller; polarization modulators; polarizer; transfer function; ultrawide frequency tunable range; Microwave amplifiers; Microwave filters; Microwave photonics; Optical polarization; Switches; Microwave photonics; microwave signal generation; phase coding; radar pulse compression;
Journal_Title :
Photonics Technology Letters, IEEE
DOI :
10.1109/LPT.2013.2253455