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首页> 外文期刊>Optics Letters >Time-resolved multimode heterodyne detection for dissecting coherent states of matter
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Time-resolved multimode heterodyne detection for dissecting coherent states of matter

机译:用于解剖相干态的时间分辨多模外差检测

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Unveiling and controlling the time evolution of the momentum and position of low energy excitations such as phonons, magnons, and electronic excitation is the key to attain coherently driven new functionalities of materials. Here we report the implementation of femtosecond time- and frequency-resolved multimode heterodyne detection and show that it allows for independent measurement of the time evolution of the position and momentum of the atoms in coherent vibrational states in alpha-quartz. The time dependence of the probe field quadratures reveals that their amplitude is maximally changed when the atoms have maximum momentum, while their phase encodes a different information and evolves proportionally to the instantaneous atomic positon. We stress that this methodology, providing the mean to map both momentum and position in one optical observable, may be of relevance for both quantum information technologies and time-domain studies on complex materials. (C) 2020 Optical Society of America
机译:揭示和控制诸如声子,氧化滞和电子激发等低能量激发的动量和位置的时间演变是达到合动性地驱动的材料功能的关键。在这里,我们报告了飞秒时间和频率分辨的多模自差检测的实施,并表明它允许在α-石英中的相干振动状态下的原子位置和动量的时间演变。当原子具有最大动量时,探针场四边形的时间依赖性揭示了它们的幅度,而它们的相位对不同的信息进行了不同的信息并与瞬时原子的旋转成比例地发展。我们强调这种方法,提供了一种光学可观察到的势头和位置的平均值,可以对复杂材料的量子信息技术和时域研究进行相关性。 (c)2020美国光学学会

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