首页> 外文期刊>Journal of Physics, B. Atomic, Molecular and Optical Physics: An Institute of Physics Journal >Suppressing decoherence of spin waves in a warm atomic vapor by applying a guiding magnetic field
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Suppressing decoherence of spin waves in a warm atomic vapor by applying a guiding magnetic field

机译:通过施加引导磁场抑制自旋波在热原子蒸气中的退相干

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摘要

We report an experimental and theoretical investigation to extend lifetimes of light storages by applying guiding magnetic fields in a room-temperature atomic vapor. The storages are based on dynamic electromagnetically induced transparency. Retrieval efficiencies versus storage time are experimentally measured for different strengths of the guiding magnetic fields. The measured results show that the 1/e storage times are similar to 6 mu s and similar to 59 mu s for the guiding field B-0z = 0 and B-0z = 93 mG, respectively. Physical processes causing decoherence in an atomic ensemble have been discussed and analyzed. A theory model which is used to evaluate the decoherence caused by fluctuations of transverse magnetic fields is developed. Based on this evaluation, the fact that storage lifetimes can be increased by applying guiding magnetic fields is well explained.
机译:我们报告了一项实验和理论研究,通过在室温原子蒸气中施加引导磁场来延长光存储的寿命。这些存储基于动态电磁感应的透明性。对于引导磁场的不同强度,通过实验测量了检索效率与存储时间的关系。测量结果表明,对于引导场B-0z = 0和B-0z = 93 mG,1 / e的存储时间分别约为6μs和59μs。已经讨论和分析了导致原子团中退相干的物理过程。建立了一个理论模型,用于评估横向磁场波动引起的退相干。基于该评估,很好地解释了可以通过施加引导磁场来延长存储寿命的事实。

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