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Coherent control of multisubband wavepackets with terahertz (Thz) pulses

机译:太赫兹(Thz)脉冲的多子带波包的相干控制

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We perform numerical calculations to study coherent control of multisubband wavepackets by means of pairs of subpicosecond terahertz laser pulses in suitably designed quantum well structures. We employ a single-particle, effective-mass model of the semiconductor structures. Our purpose is to explore the applicability of the ideas of coherent control and wavepacket interferometry to a new physical system (multisubband wavepackets in doped semiconductor quantum wells) and in a new frequency range (terahertz radiation). Similar ideas have been successfully demonstrated in recent years in atomic, molecular, and excitonic systems, in the optical or near-infrared spectrum. We analyze in detail four quantum well structures, with emphasis on the wavepacket dynamics and interference, and demonstrate numerically the possibility of measurable coherent control of the population of the excited electrons. These wavepacket-interference effects could be used to study decoherence times in doped semiconductor structures. Also, due to the sensitivity of the interference effects to the potential energy, the scheme could be employed to detect defects in the sample. The article also presents a study to determine whether an absorption experiment in a quantum well can be used to determine the shape of a subcycle laser pulse. We show that it is difficult to distinguish pulses with a Gaussian envelope of the vector potential from pulses in which the electric field envelope is Gaussian.
机译:我们进行数值计算,以研究在适当设计的量子阱结构中通过亚皮秒级太赫兹激光脉冲对对多子带波包的相干控制。我们采用了半导体结构的单粒子有效质量模型。我们的目的是探索相干控制和波包干涉测量的思想在新的物理系统(掺杂半导体量子阱中的多子带波包)和新频率范围(太赫兹辐射)中的适用性。近年来,在原子,分子和激子系统中,在光谱或近红外光谱中已成功证明了类似的想法。我们详细分析了四个量子阱结构,重点是波包动力学和干涉,并在数值上证明了可测量相干控制激发电子的数量的可能性。这些波包干扰效应可用于研究掺杂半导体结构中的相干时间。同样,由于干扰效应对势能的敏感性,该方案可用于检测样品中的缺陷。该文章还提出了一项研究,以确定是否可以使用量子阱中的吸收实验来确定子周期激光脉冲的形状。我们表明,很难将具有矢量电势高斯包络的脉冲与电场包络为高斯的脉冲区分开。

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