首页> 外文期刊>Journal of nanoparticle research: An interdisciplinary forum for nanoscale science and technology >Exciton-plasmon quantum metastates: self-induced oscillations of plasmon fields in the absence of decoherence in nanoparticle molecules
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Exciton-plasmon quantum metastates: self-induced oscillations of plasmon fields in the absence of decoherence in nanoparticle molecules

机译:激子-等离激元量子态:纳米粒子分子中不存在退相干时等离激元场的自激振荡

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摘要

We investigate formation of unique quantum states (metastates) in quantum dot-metallic nanoparticle systems via self-induced coherent dynamics generated by interaction of these systems with a visible and an infrared laser fields. In such metastates, the quantum decoherence rates of the quantum dots can become zero and even negative while they start to rapidly change with time. Under these conditions, the energy dissipation rates and plasmon fields of the nanoparticle systems undergo undamped oscillations with gigahertz frequency, while the amplitudes of both visible and the infrared laser fields are considered to be time-independent. These dynamics also lead to variation of the plasmon absorption of the metallic nanoparticles between high and nearly zero values, forming electromagnetically induced transparency oscillations. We show that under these conditions, the effective transition energies and broadening of the quantum dots undergo oscillatory dynamics, highlighting the unique aspects of the metastates. These results extend the horizon for investigation of light-matter interaction in the presence of zero or negative polarization dephasing rates with strong time dependency.
机译:我们研究了量子点金属纳米粒子系统中通过自感应相干动力学形成的独特量子态(跃迁),这些动力学是由这些系统与可见光和红外激光场相互作用而产生的。在这样的元态中,当量子点开始随时间快速变化时,量子点的量子退相干率可能变为零,甚至变为负数。在这些条件下,纳米粒子系统的能量耗散率和等离激元场经历了千兆赫兹频率的无阻尼振荡,而可见光和红外激光场的振幅均被认为与时间无关。这些动力学还导致金属纳米颗粒的等离子体吸收在高值和接近零值之间变化,从而形成电磁感应的透明振荡。我们表明,在这些条件下,有效的跃迁能量和量子点的扩宽经历了振荡动力学,突出了亚稳态的独特方面。这些结果为存在零或负偏振移相速率且时间依赖性强的光-物质相互作用研究提供了广阔的视野。

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