Journal of Infrared and Millimeter Waves, Volume. 39, Issue 2, 211(2020)

Investigation on a W-band high efficiency extended interaction oscillator based on phase re-synchronization technology

Zi-Cheng WANG1, Xin-Wen SHANG1, Lin-Lin CAO1,2, Bo-Jun TANG1, and Liu XIAO1
Author Affiliations
  • 1Key Laboratory of Science and Technology on High Power Microwave Sources and Technologies, Aerospace Information Research Institute, Chinese Academy of Sciences, Beijing0400, China
  • 2School of Electric,Electrical and Communicaion Engineering, University of Chinese Academy of Sciences, Beijing100039, China
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    An extended interaction oscillator(EIO) based on a single cavity composed of 12 periods of staggered double rectangular waveguide slow wave structure (SDRWSWS) is modeled and calculated on computer, those methods and steps for determining the structural parameters and the beam parameters are given. A new method called “phase re-synchronization technology” is proposed to improve electron efficiency of EIO, the method is to decrease the periods of the fifth and sixth periods of SDRWSWS counted from the entrance of the beam by 10%, so that the magnitude of the z component of electric field intensity becomes weaker in the segment which is far from the output port, but becomes stronger in the segment which is near from the output port, and such an Ez distribution is in favor of good bunching in the beam as the beam is proceeding. On the other hand, the phase of the z component of electric field intensity increases about 51.6o between the 7 to 12 periods, so that the electric field maintains synchronization with the space electric charge wave in the beam and abstracts more kinetic energy from the beam. Computer simulation results show that both power and electron efficiency become higher conspicuously, the maximum improved values are over double of unimproved ones.

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    Zi-Cheng WANG, Xin-Wen SHANG, Lin-Lin CAO, Bo-Jun TANG, Liu XIAO. Investigation on a W-band high efficiency extended interaction oscillator based on phase re-synchronization technology[J]. Journal of Infrared and Millimeter Waves, 2020, 39(2): 211

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    Paper Information

    Category: Millimeter Wave and Terahertz Technology

    Received: May. 21, 2019

    Accepted: --

    Published Online: Apr. 29, 2020

    The Author Email:

    DOI:10.11972/j.issn.1001-9014.2020.02.008

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