A tunable negative coefficient band-pass microwave photonic filter (MPF) with improved mainlobe-to-sidelobe sup-pression ratio (MSSR) by a Sagnac interferometer (SI) is experimentally demonstrated. The negative coeffi...A tunable negative coefficient band-pass microwave photonic filter (MPF) with improved mainlobe-to-sidelobe sup-pression ratio (MSSR) by a Sagnac interferometer (SI) is experimentally demonstrated. The negative coefficient characteristic of MPF is achieved by using the phase modulation technology. The central frequency of the band-pass MPF is tunable continuously by changing the wavelength separation of multi-wavelength optical carriers. A 38-tap negative coefficient band-pass MPF whose MSSR is increased by about 6.371 dB is achieved in experiment by apodizing the tap coefficient with the Sagnac interferometer.展开更多
A novel approach for the implementation of microwave photonic filter with positive and negative coefficients based on an unbalanced Mach-Zehnder modulator(MZM) is proposed.In the proposed filter,a microwave signal to ...A novel approach for the implementation of microwave photonic filter with positive and negative coefficients based on an unbalanced Mach-Zehnder modulator(MZM) is proposed.In the proposed filter,a microwave signal to be filtered is applied to an unbalanced MZM.Thanks to the unbalance between the two arms of the modulator,a π phase shift is obtained by adjusting the wavelength interval between the adjacent wavelengths,which leads to the generation of the positive and negative coefficients.The theoretical fundamentals of the design are described,which show that the required unbalanced MZM in the scheme can be well fabricated by the current technology,and the required other components,including the wavelength multiplexer,are also commercially available devices.An eight-tap microwave photonic filter with positive and negative coefficients is demonstrated.The tunability and reconfigurability of the eight-tap microwave photonic filter are also investigated to verify our approach.展开更多
文摘A tunable negative coefficient band-pass microwave photonic filter (MPF) with improved mainlobe-to-sidelobe sup-pression ratio (MSSR) by a Sagnac interferometer (SI) is experimentally demonstrated. The negative coefficient characteristic of MPF is achieved by using the phase modulation technology. The central frequency of the band-pass MPF is tunable continuously by changing the wavelength separation of multi-wavelength optical carriers. A 38-tap negative coefficient band-pass MPF whose MSSR is increased by about 6.371 dB is achieved in experiment by apodizing the tap coefficient with the Sagnac interferometer.
基金supported by the National Natural Science Foundation of China(No.60807003)the Beijing Nova Program(No.2008A026)the Program for New Century Excellent Talents in University(No.NCET-09-0209)
文摘A novel approach for the implementation of microwave photonic filter with positive and negative coefficients based on an unbalanced Mach-Zehnder modulator(MZM) is proposed.In the proposed filter,a microwave signal to be filtered is applied to an unbalanced MZM.Thanks to the unbalance between the two arms of the modulator,a π phase shift is obtained by adjusting the wavelength interval between the adjacent wavelengths,which leads to the generation of the positive and negative coefficients.The theoretical fundamentals of the design are described,which show that the required unbalanced MZM in the scheme can be well fabricated by the current technology,and the required other components,including the wavelength multiplexer,are also commercially available devices.An eight-tap microwave photonic filter with positive and negative coefficients is demonstrated.The tunability and reconfigurability of the eight-tap microwave photonic filter are also investigated to verify our approach.