• Chinese Optics Letters
  • Vol. 15, Issue 5, 050603 (2017)
Haojie Wang, Shangyuan Li, Xiaoping Zheng*, Xiaoxiao Xue, Hanyi Zhang, and Bingkun Zhou
Author Affiliations
  • Tsinghua National Laboratory for Information Science and Technology, Department of Electronic Engineering, Tsinghua University, Beijing 100084, China
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    DOI: 10.3788/COL201715.050603 Cite this Article Set citation alerts
    Haojie Wang, Shangyuan Li, Xiaoping Zheng, Xiaoxiao Xue, Hanyi Zhang, Bingkun Zhou. Highly linear W-band receiver front-end based on higher-order optical sideband processing[J]. Chinese Optics Letters, 2017, 15(5): 050603 Copy Citation Text show less
    Block diagram of an electro-optic hybrid W-band receiver front-end. LNA, low noise amplifier.
    Fig. 1. Block diagram of an electro-optic hybrid W-band receiver front-end. LNA, low noise amplifier.
    Spectrum evolution. (a) The optical spectrum at the output of the MZM. (b) The electrical frequency components after the PD, without OSP and with OSP.
    Fig. 2. Spectrum evolution. (a) The optical spectrum at the output of the MZM. (b) The electrical frequency components after the PD, without OSP and with OSP.
    Simulation results of the RFI versus the attenuation of the 0-OSB (φP=π,m=0.4).
    Fig. 3. Simulation results of the RFI versus the attenuation of the 0-OSB (φP=π,m=0.4).
    Schematic diagram of the experimental setup. PC, polarization controller.
    Fig. 4. Schematic diagram of the experimental setup. PC, polarization controller.
    Measured SFDR considered with seven OSBs (solid line), five OSBs (dashed line), and without compensation (dotted line).
    Fig. 5. Measured SFDR considered with seven OSBs (solid line), five OSBs (dashed line), and without compensation (dotted line).
    Haojie Wang, Shangyuan Li, Xiaoping Zheng, Xiaoxiao Xue, Hanyi Zhang, Bingkun Zhou. Highly linear W-band receiver front-end based on higher-order optical sideband processing[J]. Chinese Optics Letters, 2017, 15(5): 050603
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