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Radio-frequency-modulated Rydberg states in a vapor cell

机译:蒸气室中的射频调制里德堡态

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Download video Transcript View all New J. Phys. video abstracts We measure strong radio-frequency (RF) electric fields using rubidium Rydberg atoms prepared in a room-temperature vapor cell as field sensors. Electromagnetically induced transparency is employed as an optical readout. We RF-modulate the and Rydberg states with 50 and 100 MHz fields, respectively. For weak to moderate RF fields, the Rydberg levels become Stark-shifted, and sidebands appear at even multiples of the driving frequency. In high fields, the adjacent hydrogenic manifold begins to intersect the shifted levels, providing rich spectroscopic structure suitable for precision field measurements. A quantitative description of strong-field level modulation and mixing of S and D states with hydrogenic states is provided by Floquet theory. Additionally, we estimate the shielding of DC electric fields in the interior of the glass vapor cell.
机译:下载视频抄本查看全部New J. Phys。视频摘要我们使用室温蒸气池中制备的id里德堡原子作为场传感器来测量强射频(RF)电场。电磁感应的透明度用作光学读数。我们分别用50和100 MHz场对RF和Rydberg态进行射频调制。对于弱到中等的RF场,Rydberg电平会发生Stark偏移,并且边带出现在驱动频率的偶数倍处。在高场中,相邻的氢歧管开始与位移的水平相交,从而提供了适合于精确场测量的丰富光谱结构。 Floquet理论定量描述了强场能级调制以及S和D态与氢态的混合。此外,我们估计了玻璃蒸汽电池内部的直流电场的屏蔽。

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