All-Fiber-Optics-Based Microwave Photonic Filter With Tunable Center Frequency and Passband Plus Notch

We propose and demonstrate a microwave photonic band-pass filter (MPF), which features a single light source, with continuously and independently tunable center frequency and bandwidth. The center frequency and bandwidth can be adjusted by tuning the variable optical delay line and the position of a...

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Hlavní autoři: Xiao Zhang, Chengming Wang, Wenchao Liao, Wenxin Zhang, Shengnan Ai, Zhangkai Peng, Ping Xue
Médium: Článek
Jazyk:English
Vydáno: IEEE 2017-01-01
Edice:IEEE Photonics Journal
Témata:
On-line přístup:https://ieeexplore.ieee.org/document/7987692/
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author Xiao Zhang
Chengming Wang
Wenchao Liao
Wenxin Zhang
Shengnan Ai
Zhangkai Peng
Ping Xue
author_facet Xiao Zhang
Chengming Wang
Wenchao Liao
Wenxin Zhang
Shengnan Ai
Zhangkai Peng
Ping Xue
author_sort Xiao Zhang
collection DOAJ
description We propose and demonstrate a microwave photonic band-pass filter (MPF), which features a single light source, with continuously and independently tunable center frequency and bandwidth. The center frequency and bandwidth can be adjusted by tuning the variable optical delay line and the position of a spatial filter, respectively. Using a balanced photodetector, the baseband, which is ineradicable in some conventional designs, and the common-mode noise are canceled in our proof-of-concept experiment. Alternatively, a notch with continuously tunable frequency can also be added in the MPF. The experimental measurements of the frequency response of this MPF are demonstrated, which have a good agreement with the theoretical simulations.
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spelling doaj.art-e5cf4a3c932f45b79f42e13d2d0b76f02022-12-21T23:07:37ZengIEEEIEEE Photonics Journal1943-06552017-01-01951810.1109/JPHOT.2017.27305877987692All-Fiber-Optics-Based Microwave Photonic Filter With Tunable Center Frequency and Passband Plus NotchXiao Zhang0Chengming Wang1Wenchao Liao2Wenxin Zhang3Shengnan Ai4Zhangkai Peng5Ping Xue6State Key Laboratory of Low-dimensional Quantum Physics and Department of Physics, Tsinghua University and School of Life Science, Beijing Institute of Technology, Beijing, ChinaState Key Laboratory of Low-dimensional Quantum Physics and Center for Atomic and Molecular Nanoscience, Department of Physics, Tsinghua University and Collaborative Innovation Center of Quantum Matter, Beijing, ChinaState Key Laboratory of Low-dimensional Quantum Physics and Center for Atomic and Molecular Nanoscience, Department of Physics, Tsinghua University and Collaborative Innovation Center of Quantum Matter, Beijing, ChinaState Key Laboratory of Low-dimensional Quantum Physics and Center for Atomic and Molecular Nanoscience, Department of Physics, Tsinghua University and Collaborative Innovation Center of Quantum Matter, Beijing, ChinaState Key Laboratory of Low-dimensional Quantum Physics and Center for Atomic and Molecular Nanoscience, Department of Physics, Tsinghua University and Collaborative Innovation Center of Quantum Matter, Beijing, ChinaState Key Laboratory of Low-dimensional Quantum Physics and Center for Atomic and Molecular Nanoscience, Department of Physics, Tsinghua University and Collaborative Innovation Center of Quantum Matter, Beijing, ChinaState Key Laboratory of Low-dimensional Quantum Physics and Center for Atomic and Molecular Nanoscience, Department of Physics, Tsinghua University and Collaborative Innovation Center of Quantum Matter, Beijing, ChinaWe propose and demonstrate a microwave photonic band-pass filter (MPF), which features a single light source, with continuously and independently tunable center frequency and bandwidth. The center frequency and bandwidth can be adjusted by tuning the variable optical delay line and the position of a spatial filter, respectively. Using a balanced photodetector, the baseband, which is ineradicable in some conventional designs, and the common-mode noise are canceled in our proof-of-concept experiment. Alternatively, a notch with continuously tunable frequency can also be added in the MPF. The experimental measurements of the frequency response of this MPF are demonstrated, which have a good agreement with the theoretical simulations.https://ieeexplore.ieee.org/document/7987692/Microwave photonic filtersingle bandpass filter.
spellingShingle Xiao Zhang
Chengming Wang
Wenchao Liao
Wenxin Zhang
Shengnan Ai
Zhangkai Peng
Ping Xue
All-Fiber-Optics-Based Microwave Photonic Filter With Tunable Center Frequency and Passband Plus Notch
IEEE Photonics Journal
Microwave photonic filter
single bandpass filter.
title All-Fiber-Optics-Based Microwave Photonic Filter With Tunable Center Frequency and Passband Plus Notch
title_full All-Fiber-Optics-Based Microwave Photonic Filter With Tunable Center Frequency and Passband Plus Notch
title_fullStr All-Fiber-Optics-Based Microwave Photonic Filter With Tunable Center Frequency and Passband Plus Notch
title_full_unstemmed All-Fiber-Optics-Based Microwave Photonic Filter With Tunable Center Frequency and Passband Plus Notch
title_short All-Fiber-Optics-Based Microwave Photonic Filter With Tunable Center Frequency and Passband Plus Notch
title_sort all fiber optics based microwave photonic filter with tunable center frequency and passband plus notch
topic Microwave photonic filter
single bandpass filter.
url https://ieeexplore.ieee.org/document/7987692/
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