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Relationship between electromagnetically-induced transparency and Autler–Townes splitting in a Doppler-broadened system

Relationship between electromagnetically-induced transparency and Autler–Townes splitting in a Doppler-broadened system
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摘要 We study the relationship between electromagnetically-induced transparency(EIT) and Autler–Townes(AT) splitting in a cascade three-level Doppler-broadened system. By comparing the absorption spectrum with the fluorescence excitation spectrum, it is found that for a Doppler-broadened system, EIT resonance cannot be explained as the result of quantum interference, unlike the case of a homogeneously broadened system. Instead, the macroscopic polarization interference plays an important role in determining the spectra of EIT and AT splitting, which can be explained within the same framework when being detected by the absorption spectra. We study the relationship between electromagnetically-induced transparency(EIT) and Autler–Townes(AT) splitting in a cascade three-level Doppler-broadened system. By comparing the absorption spectrum with the fluorescence excitation spectrum, it is found that for a Doppler-broadened system, EIT resonance cannot be explained as the result of quantum interference, unlike the case of a homogeneously broadened system. Instead, the macroscopic polarization interference plays an important role in determining the spectra of EIT and AT splitting, which can be explained within the same framework when being detected by the absorption spectra.
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2015年第7期244-251,共8页 中国物理B(英文版)
基金 Project supported by the National Natural Science Foundation of China(Grant Nos.11404330,11274376,61308011,and 11474347) the NSAF,China(Grant No.U1330117) the National Basic Research Program of China(Grant Nos.2013CB922002 and 2010CB922904) the China Postdoctoral Science Foundation(Grant No.119103S239)
关键词 electromagnetically-induced transparency polarisation interference Autler–Townes splitting electromagnetically-induced transparency,polarisation interference,Autler–Townes splitting
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