A new maser mechanism of pulsar radio emission is suggested and calculated. We assume a system of currents to form in the equatorial. plane, near the light cylinder. The system consists of charges oscillating across the plane and drifting along it at a relativistic velocity. We analyzed dynamics of currents in the region adjacent to the light cylinder. Basing on this analysis, we calculated the maser mechanism that involves interaction of relativistic anharmonic oscillators with a high-quality mode of the ''whispering-gallery'' type, guided by the corotating (dense) part of the pulsar magnetosphere. We estimate the emission power, characteristic frequencies, and directivity pattern; these quantities are consistent with observational data.
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Research Center for Astronomical Computing,Zhejiang LaboratoryResearch Center for Astronomical Computing,Zhejiang Laboratory
Mengting Liu
Di Li
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Department of Astronomy, Tsinghua University
National Astronomical Observatories, Chinese Academy of SciencesResearch Center for Astronomical Computing,Zhejiang Laboratory
Di Li
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JRDawson
Joel MWeisberg
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Department of Physics and Astronomy, Carleton CollegeResearch Center for Astronomical Computing,Zhejiang Laboratory
Joel MWeisberg
George Hobbs
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CSIRO Astronomy & Space Science, Australia Telescope National FacilityResearch Center for Astronomical Computing,Zhejiang Laboratory
George Hobbs
Ningyu Tang
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Department of Physics, Anhui Normal UniversityResearch Center for Astronomical Computing,Zhejiang Laboratory
Ningyu Tang
Gan Luo
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Institut de Radioastronomie Millimetrique, Rue de la PiscineResearch Center for Astronomical Computing,Zhejiang Laboratory
Gan Luo
Duo Xu
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Canadian Institute for Theoretical Astrophysics, University of Toronto, StGeorgeResearch Center for Astronomical Computing,Zhejiang Laboratory
Duo Xu
Donghui Quan
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Research Center for Astronomical Computing,Zhejiang LaboratoryResearch Center for Astronomical Computing,Zhejiang Laboratory