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High-quality electromagnetically-induced absorption resonances in a buffer-gas-filled vapour cell

机译:高质量的电磁诱导的缓冲气体蒸气细胞中的吸收共振

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Magneto-optical subnatural-linewidth resonances of electromagnetically-induced absorption (EIA) in an alkali vapour cell have been experimentally studied. The observation configuration includes using two counter-propagating pumps and probe light waves with mutually orthogonal linear polarizations, exciting an open optical transition in the Rb-87 D-1 line in the presence of argon buffer gas. The EIA signals registered in a probe-wave transmission reach an unprecedented contrast of about 135% with respect to the wide 'Doppler' absorption pedestal and 29% with respect to the level of background transmission signal. These contrast values correspond to a relatively small resonance full width at half maximum of about 7.2 mG (5.2 kHz). The width of the narrowest EIA resonance observed is about 2.1 mG (1.5 kHz). To our knowledge, such a large relative contrast at the kHz-width is the record result for EIA resonances. In general, the work has experimentally proved that the magneto-optical scheme used has very good prospects for various quantum technologies (quantum sensors of weak magnetic fields, optical switches and other photonic elements).
机译:实验研究了碱蒸气细胞中电磁诱导的电磁诱导的吸收(EIA)的磁光血对脉冲宽度共振。观察配置包括使用具有相互正交的线性偏振的两个反传播泵和探针光波,在氩气缓冲气体存在下激发RB-87 D-1线中的开放光学过渡。在探测波传输中登记的EIA信号相对于宽的“多普勒”吸收基座和29%相对于背景传输信号的水平,达到约135%的前所未有的对比度。这些对比度值对应于相对较小的共振全宽,最大值为约7.2mg(5.2kHz)。观察到最窄的EIA共振的宽度为约2.1mg(1.5 kHz)。据我们所知,KHZ宽度的这种大的相对对比是EIA共振的记录结果。一般而言,该工作已经通过实验证明,使用的磁光方案对于各种量子技术(弱磁场,光学开关和其他光子元素的量子传感器)具有非常好的前景。

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