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首页> 外文期刊>Physics Letters, A >Single-photon detection of microwave blackbody radiations in a low-temperature resonant-cavity with high Rydberg atoms
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Single-photon detection of microwave blackbody radiations in a low-temperature resonant-cavity with high Rydberg atoms

机译:具有高里德堡原子的低温谐振腔中微波黑体辐射的单光子检测

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摘要

Blackbody radiations in a microwave resonant cavity have been measured in a single-photon counting mode at low temperature from 67 mK to 1 K with Rydberg atoms. Specifically the 111(p3/2) states excited from the initially prepared 111(s1/2) states of Rb-85 by absorbing 2527 MHz blackbody photons have been selectively detected with a newly developed selective-field-ionization scheme. Fraction of the number of 111(p3/2) states to the total incident Rydberg atoms was observed to decrease abruptly with decreasing temperature. A simple theoretical prediction in over-damped regime reproduces well the experimental results. This observation confirms in a realistic situation that the Rydberg atoms provide a very sensitive low-noise single-quantum detector for microwave radiations. (c) 2005 Elsevier B.V. All rights reserved.
机译:微波共振腔中的黑体辐射已通过单光子计数模式在67 mK至1 K的低温下利用Rydberg原子进行了测量。具体而言,已经通过新开发的选择性场电离方案选择性地检测了通过吸收2527 MHz黑体光子从Rb-85的初始制备的111(s1 / 2)态激发的111(p3 / 2)态。观察到111(p3 / 2)态数相对于总入射Rydberg原子的分数随温度降低而突然降低。在过度阻尼状态下的简单理论预测可以很好地再现实验结果。该观察结果证实了在现实情况下,里德堡原子为微波辐射提供了非常灵敏的低噪声单量子检测器。 (c)2005 Elsevier B.V.保留所有权利。

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