The paperpresentsaquantummechanicaltreatmentforanalyzingtheSmith–Purcell radiation
generatedbychargedparticlespassingoveraperiodicconductingstructure.Inourtheoreticalmodel,
the electronsinteractwithasurfaceharmonicwaveexcitednearthediffractiongratingwhenthe
electron velocityisalmostequaltothephasevelocityofthesurfacewave.Then,thesurfaceharmonic
waveiselectromagneticallycoupledtoaradiationmode.Thedynamicsofelectronsareanalyzed
quantummechanicallywheretheelectronisrepresentedasatravelingelectronwavewitha finite
spreading length.Theconversionofthesurfacewaveintoapropagatingmodeisanalyzedusingthe
classical Maxwell'sequations.Inthesmall-signalgainregime,closed-formexpressionsforthe
contributions ofthestimulatedandspontaneousemissionstotheevolutionofthesurfacewaveare
derived.Theinclusionofthespreadinglengthoftheelectronwavetotheemissionspectrallineis
investigated.Finally,wecompareourresultsbasedonthequantummechanicaldescriptionofelectron
and thosebasedontheclassicalapproachwhereagoodagreementisconfirmed.
Research Abstract	
              Research Department	
              
          Research Journal	
              NuclearInstrumentsandMethodsin PhysicsResearchA 
          Research Member	
          
      Research Publisher	
              NULL
          Research Rank	
              1
          Research Vol	
              Vol. 785
          Research Website	
              NULL
          Research Year	
              2015
          Research Pages	
              pp. 143–152