Dual-Channel Phase-Tunable Down Converter With LO Frequency Doubling

A dual-channel phase-tunable down converter with local oscillator (LO) frequency doubling is proposed by using a commercial dual-polarization dual-drive Mach-Zehnder modulator (DP-DMZM) and a specially designed dual-channel phase modulator (DP-PM). A radio frequency (RF) signal is injected to one of...

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Main Authors: Yunxin Wang, Hongbiao Zhang, Dayong Wang, Tao Zhou, Feng Yang, Xin Zhong, Zhiyu Chen, Dengcai Yang, Lu Rong
Format: Article
Language:English
Published: IEEE 2020-01-01
Series:IEEE Photonics Journal
Subjects:
Online Access:https://ieeexplore.ieee.org/document/9117161/
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spelling doaj-bd0caf99c56f405a952d5286df052d402021-03-29T18:00:20ZengIEEEIEEE Photonics Journal1943-06552020-01-0112411010.1109/JPHOT.2020.30025809117161Dual-Channel Phase-Tunable Down Converter With LO Frequency DoublingYunxin Wang0https://orcid.org/0000-0003-1550-5012Hongbiao Zhang1Dayong Wang2Tao Zhou3Feng Yang4https://orcid.org/0000-0002-3471-9633Xin Zhong5Zhiyu Chen6Dengcai Yang7Lu Rong8Faculty of Science, College of Applied Sciences, Beijing University of Technology, Beijing, ChinaFaculty of Science, College of Applied Sciences, Beijing University of Technology, Beijing, ChinaFaculty of Science, College of Applied Sciences, Beijing University of Technology, Beijing, ChinaScience and Technology on Electronic Information Control Laboratory, Chengdu, ChinaFaculty of Science, College of Applied Sciences, Beijing University of Technology, Beijing, ChinaScience and Technology on Electronic Information Control Laboratory, Chengdu, ChinaScience and Technology on Electronic Information Control Laboratory, Chengdu, ChinaFaculty of Science, College of Applied Sciences, Beijing University of Technology, Beijing, ChinaFaculty of Science, College of Applied Sciences, Beijing University of Technology, Beijing, ChinaA dual-channel phase-tunable down converter with local oscillator (LO) frequency doubling is proposed by using a commercial dual-polarization dual-drive Mach-Zehnder modulator (DP-DMZM) and a specially designed dual-channel phase modulator (DP-PM). A radio frequency (RF) signal is injected to one of sub-DMZMs in the DP-DMZM, and a LO signal modulates another sub-DPMZM. An optical bandpass filter (OBPF) is used to filter out the unwanted sidebands, and only the +2nd-order LO and +1st-order RF sidebands are remained and output to the DP-PM. The DP-PM is composed by two parallel PMs with different modulation efficiency between orthogonal polarizations. Each bias voltage of the DP-PM can linearly vary the phase shift between the RF and LO modulated optical sidebands. After detected by a photodetector, the down converted signal with doubled LO frequency and dual-channel phase shift can be obtained. The principle of the proposed link is verified and the experiments are carried out. The experimental results show that the average spur suppression ratio of the down-converted signals is 29.15 dB. The spurious-free dynamic range (SFDR) of the down converter is 103.94 dB&#x00B7;Hz<sup>2/3</sup>. The continuous and dependent dual-channel phase shift with the full range of 360&#x00B0; can be experimentally achieved. The proposed down converter integrates multiple function in a link, and has the merit of high electrical purity and convenient operation.https://ieeexplore.ieee.org/document/9117161/Microwave photonicsdown converterdual-channel phase shiftfrequency doubling
collection DOAJ
language English
format Article
sources DOAJ
author Yunxin Wang
Hongbiao Zhang
Dayong Wang
Tao Zhou
Feng Yang
Xin Zhong
Zhiyu Chen
Dengcai Yang
Lu Rong
spellingShingle Yunxin Wang
Hongbiao Zhang
Dayong Wang
Tao Zhou
Feng Yang
Xin Zhong
Zhiyu Chen
Dengcai Yang
Lu Rong
Dual-Channel Phase-Tunable Down Converter With LO Frequency Doubling
IEEE Photonics Journal
Microwave photonics
down converter
dual-channel phase shift
frequency doubling
author_facet Yunxin Wang
Hongbiao Zhang
Dayong Wang
Tao Zhou
Feng Yang
Xin Zhong
Zhiyu Chen
Dengcai Yang
Lu Rong
author_sort Yunxin Wang
title Dual-Channel Phase-Tunable Down Converter With LO Frequency Doubling
title_short Dual-Channel Phase-Tunable Down Converter With LO Frequency Doubling
title_full Dual-Channel Phase-Tunable Down Converter With LO Frequency Doubling
title_fullStr Dual-Channel Phase-Tunable Down Converter With LO Frequency Doubling
title_full_unstemmed Dual-Channel Phase-Tunable Down Converter With LO Frequency Doubling
title_sort dual-channel phase-tunable down converter with lo frequency doubling
publisher IEEE
series IEEE Photonics Journal
issn 1943-0655
publishDate 2020-01-01
description A dual-channel phase-tunable down converter with local oscillator (LO) frequency doubling is proposed by using a commercial dual-polarization dual-drive Mach-Zehnder modulator (DP-DMZM) and a specially designed dual-channel phase modulator (DP-PM). A radio frequency (RF) signal is injected to one of sub-DMZMs in the DP-DMZM, and a LO signal modulates another sub-DPMZM. An optical bandpass filter (OBPF) is used to filter out the unwanted sidebands, and only the +2nd-order LO and +1st-order RF sidebands are remained and output to the DP-PM. The DP-PM is composed by two parallel PMs with different modulation efficiency between orthogonal polarizations. Each bias voltage of the DP-PM can linearly vary the phase shift between the RF and LO modulated optical sidebands. After detected by a photodetector, the down converted signal with doubled LO frequency and dual-channel phase shift can be obtained. The principle of the proposed link is verified and the experiments are carried out. The experimental results show that the average spur suppression ratio of the down-converted signals is 29.15 dB. The spurious-free dynamic range (SFDR) of the down converter is 103.94 dB&#x00B7;Hz<sup>2/3</sup>. The continuous and dependent dual-channel phase shift with the full range of 360&#x00B0; can be experimentally achieved. The proposed down converter integrates multiple function in a link, and has the merit of high electrical purity and convenient operation.
topic Microwave photonics
down converter
dual-channel phase shift
frequency doubling
url https://ieeexplore.ieee.org/document/9117161/
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