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首页> 外文期刊>Laser Physics: An International Journal devoted to Theoretical and Experimental Laser Research and Application >Detuning radio-frequency electrometry using Rydberg atoms in a room-temperature vapor cell
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Detuning radio-frequency electrometry using Rydberg atoms in a room-temperature vapor cell

机译:使用室温蒸汽细胞中使用rydberg原子来防止射频电气测定

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摘要

Traceable radio-frequency electric field measurements with high sensitivity have been demonstrated from the centimeter wave to the millimeter wave using room-temperature Rydberg atoms. Here, we investigate the splitting spectra of electromagnetically induced transparency induced by a radio-frequency electric field, which is detuned from the resonant frequency of transitions between two Rydberg states, 47D(5/2)- 48P(3/2). By varying the detuning of the radio-frequency electric field, we measure the separation between the two peaks, and in particular their relative height. The resulting measured resonant transition frequency between two Rydberg states is found to exhibit a visible change when the power of the radio-frequency electric field is varied, thus causing uncertainty in the traceable radio-frequency electric field measurement. Further, the effect of detuning of the probe light on the radio-frequency electric field measurement is presented.
机译:使用室温rydberg原子从厘米波向毫米波证明具有高灵敏度的可追踪射频电场测量。 这里,我们研究了由射频电场引起的电磁诱导的透明度的分裂光谱,其从两个rydberg态,47d(5/2)之间的转变频率静脉静脉静脉静脉探测。 48p(3/2)。 通过改变射频电场的静脉,我们测量两个峰之间的分离,特别是它们的相对高度。 当射频电场的功率变化时,发现在两个Rydberg状态之间的所得测量的谐振转变频率在射频电场的功率变化时表现出可见的变化,从而导致可追踪射频电场测量的不确定性。 此外,介绍了探针光对射频电场测量的影响。

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