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Ultra high-speed all-optical coherent memory cell

机译:超高速全光相干存储器单元

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We study the interaction of two counterpropagating unipolar video pulses of electromagnetic radiation in a dense resonant two-level medium. The pulse durations are less than one oscillation period of an atomic transition. We show that a polariton cluster (i.e. the compact long-living strongly coupled state of electromagnetic field and matter polarization) is created, when two unipolar pulses collide in a resonant medium of the frequency ω_0 (the pulses correspond to self-induced transparency solitons of the same amplitudes and opposite polarities). We have studied for the first time the conditions of maximal excitation of a resonant polarization in the polariton cluster volume. We show that there exist optimal durations and amplitudes of the recording pulses. We studied the processes of double and multiple recording and erasing of an optical memory cell in a thin layer of a resonant medium (quantum dots). We demonstrated that the pulse rate of the recording-erasing pulses can reach 60 000 GHz and higher, which happens under the coherent regime of the interaction between the electromagnetic field and polarization of the medium.
机译:我们研究了致密谐振两级介质中电磁辐射的两个逆产单极视频脉冲的相互作用。脉冲持续时间小于原子转换的一个振荡周期。我们表明,当两个单极脉冲在频率ω_0的谐振介质中碰撞时,创建了Polariton簇(即电磁场和物质极化的紧凑型电磁场和物质极化状态)(脉冲对应于自诱导透明度孤子相同的幅度和极性)。我们已经研究了第一次在Polariton簇体积中最大激发的最大激励条件。我们表明,存在最佳持续时间和记录脉冲的幅度。我们研究了谐振介质(量子点)的薄层中的双倍和多次记录和擦除光学存储器单元的过程。我们证明了记录擦除脉冲的脉冲率可以达到60 000GHz和更高,这在电磁场与介质的偏振之间的相互作用的相干状态下发生。

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