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Ultranarrow bandwidth tunable atomic filter via quantum interference-induced polarization rotation in Rb vapor 被引量:2
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作者 谭政 孙献平 +5 位作者 罗军 程雍 赵修超 周欣 王谨 詹明生 《Chinese Optics Letters》 SCIE EI CAS CSCD 2014年第12期88-91,共4页
We report the experimental demonstration of an ultranarrow bandwidth atomic filter by optically induced polarization rotation in multilevel electromagnetically induced transparency systems in hot Rb vapor. With a coup... We report the experimental demonstration of an ultranarrow bandwidth atomic filter by optically induced polarization rotation in multilevel electromagnetically induced transparency systems in hot Rb vapor. With a coupling intensity of 2.3 W/cm^2, the filter shows a peak transmission of 33.2% and a bandwidth of 10 MHz. By altering the coupling frequency, a broad tuning range of several Doppler linewidths of the D1 line transitions of STRb atoms can be obtained. The presented atomic filter has useful features of ultranarrow bandwidth, and the operating frequency can be tuned resonance with the atomic transition. Such narrowband tunable atomic filter can be used as an efficient noise rejection tool in classical and quantum optical applications. 展开更多
关键词 Ultranarrow bandwidth tunable atomic filter via quantum interference-induced polarization rotation in Rb vapor EIT Rb
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