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Optical switching and bistability in a degenerated two-level atomic medium under an external magnetic field

机译:在外部磁场下退化的双层原子介质中的光学切换和双稳态

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摘要

We propose a simple system for both optical switching and bistability based on degenerated two-level atoms placed in a ring cavity and an external magnetic field. The magnetic field splits a lower level into two separated levels, both of which are connected to an upper level by coupling and probe laser fields. Under an electromagnetically induced transparency regime, the system exhibits optical bistability and switching properties in which its thresholds and switching rate can be controlled by modulating intensity of the magnetic field or the coupling light field. Furthermore, the system can be controlled to work in varying frequency regimes by using a sole laser for both coupling and probe fields. Such a proposed scheme may be useful for realization of optical switches and storage devices. (C) 2019 Optical Society of America
机译:我们提出了一种基于置于环腔和外部磁场中的退化的双层原子的光学切换和双态性的简单系统。 磁场将较低水平分成两个分开的电平,两者都通过耦合和探针激光场连接到上限。 在电磁诱导的透明度方案下,该系统具有光学双稳态和切换性能,其中可以通过调制磁场或耦合光场的强度来控制其阈值和切换速率。 此外,可以通过使用用于耦合和探针场的唯一激光来控制系统以在不同的频率调节中工作。 这种提出的方案可用于实现光学开关和存储设备。 (c)2019年光学学会

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