首页> 美国卫生研究院文献>Nanomaterials >Ultrafast Spectroscopy of Fano-Like Resonance between Optical Phonon and Excitons in CdSe Quantum Dots: Dependence of Coherent Vibrational Wave-Packet Dynamics on Pump Fluence
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Ultrafast Spectroscopy of Fano-Like Resonance between Optical Phonon and Excitons in CdSe Quantum Dots: Dependence of Coherent Vibrational Wave-Packet Dynamics on Pump Fluence

机译:CdSe量子点中光子和激子之间的范式共振的超快光谱:泵浦注量的相干振动波包动力学的依赖

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摘要

The main goal of the present work is to study the coherent phonon in strongly confined CdSe quantum dots (QDs) under varied pump fluences. The main characteristics of coherent phonons (amplitude, frequency, phase, spectrogram) of CdSe QDs under the red-edge pump of the excitonic band [1S(e)-1S3/2(h)] are reported. We demonstrate for the first time that the amplitude of the coherent optical longitudinal-optical (LO) phonon at 6.16 THz excited in CdSe nanoparticles by a femtosecond unchirped pulse shows a non-monotone dependence on the pump fluence. This dependence exhibits the maximum at pump fluence ~0.8 mJ/cm2. At the same time, the amplitudes of the longitudinal acoustic (LA) phonon mode at 0.55 THz and of the coherent wave packet of toluene at 15.6, 23.6 THz show a monotonic rise with the increase of pump fluence. The time frequency representation of an oscillating signal corresponding to LO phonons revealed by continuous wavelet transform (CWT) shows a profound destructive quantum interference close to the origin of distinct (optical phonon) and continuum-like (exciton) quasiparticles. The CWT spectrogram demonstrates a nonlinear chirp at short time delays, where the chirp sign depends on the pump pulse fluence. The CWT spectrogram reveals an anharmonic coupling between optical and acoustic phonons.
机译:本工作的主要目的是研究在不同泵浦注量下强约束CdSe量子点(QDs)中的相干声子。报道了激子带[1S(e)-1S3 / 2(h)]的红边泵浦下CdSe QDs的相干声子的主要特征(幅度,频率,相位,频谱图)。我们首次证明了飞秒解扰脉冲在CdSe纳米粒子中激发的6.16 THz处的相干光学纵向光学(LO)声子的振幅显示出对泵浦注量的非单调依赖性。这种依赖性在泵注量〜0.8 mJ / cm 2 时表现出最大值。同时,随着泵浦注量的增加,纵向声(LA)声子模在0.55 THz的振幅和甲苯的相干波包在15.6、23.6 THz的振幅显示出单调上升。通过连续小波变换(CWT)揭示的与LO声子相对应的振荡信号的时频表示,在接近独特的(光学声子)和类连续体(激子)准粒子的起源附近,表现出深远的破坏性量子干扰。 CWT频谱图显示了短时延的非线性线性调频,其中线性调频符号取决于泵浦脉冲通量。 CWT频谱图揭示了光子和声子之间的非谐耦合。

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