We simultaneously compare the probe transmission,Four-Wave Mixing(FWM)and fluorescence signals with dressing effects in a four-level atomic system.The variation rules of three types of signals are exhibited by changin...We simultaneously compare the probe transmission,Four-Wave Mixing(FWM)and fluorescence signals with dressing effects in a four-level atomic system.The variation rules of three types of signals are exhibited by changing the frequency detuning and power of incident laser beams.The interplay between two ladder subsystems is investigated in the Y-type atomic system.In particular,the fluorescence signal with ultra-narrow linewidth is obtained due to being sheared twice by the electromagnetically induced transparency window.Such fluorescence with very high coherence and monochromaticity can be used for the quantum correlation and narrow linewidth laser.展开更多
基金Supported by the National Basic Research Program of China(2012CB921804)the National Natural Science Foun-dation of China(10974151,61078002,61078020,11104214,61108017,11104216,61205112),NCET(08-0431),RFDP(20110201110006,20110201120005,20100201120031),FRFCU(2012jdhz05,2011jdhz07,xjj2011083,xjj2011084,xjj20100151,xjj20100100,xjj2012080),and CPSF(2012M521773).
文摘We simultaneously compare the probe transmission,Four-Wave Mixing(FWM)and fluorescence signals with dressing effects in a four-level atomic system.The variation rules of three types of signals are exhibited by changing the frequency detuning and power of incident laser beams.The interplay between two ladder subsystems is investigated in the Y-type atomic system.In particular,the fluorescence signal with ultra-narrow linewidth is obtained due to being sheared twice by the electromagnetically induced transparency window.Such fluorescence with very high coherence and monochromaticity can be used for the quantum correlation and narrow linewidth laser.