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Ultrafast coherent all-optical switching in quantum-well semiconductor microcavity

机译:量子阱半导体微腔中的超快速相干全光切换

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Picosecond degenerate four-wave mixing experiments at room temperature in a GaInAs-GaInAsP multiple quantum well embedded in a microcavity are presented. An input diffraction efficiency of 2% with only 1 /spl mu/J/cm/sup 2/ pump fluence is achieved. The authors show that the diffraction phenomenon is ultrafast and coherent. For a photon energy 30 meV below the exciton band edge and for low pump intensities (1 /spl mu/J/cm/sup 2/), the diffraction phenomenon is not perturbed by strong and spatially uniform pump pulse pre-illumination. This result demonstrates the potential of semiconductor microcavities for the realisation of ultrafast, sensitive and coherent devices.
机译:提出了在微腔中嵌入GaInAs-GaInAsP多量子阱的室温下皮秒简并四波混合实验。仅1 / spl mu / J / cm / sup 2 /泵通量就能达到2%的输入衍射效率。作者表明,衍射现象是超快且连贯的。对于在激子带边缘以下30 meV的光子能量和低泵浦强度(1 / spl mu / J / cm / sup 2 /),衍射现象不会受到强且空间均匀的泵浦脉冲预照明的干扰。该结果证明了用于实现超快,灵敏和相干设备的半导体微腔的潜力。

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