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Degenerate four-wave mixing and two-photon induced gratings in colloidal quantum dots CdSe/ZnS

机译:胶体量子点CdSe / ZnS中的简并四波混频和双光子诱导光栅

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The features of nonlinear and electro-optical processes has been discovered in the case of two-photon resonant excitation of the excitons in colloidal CdSe/ZnS quantum dots. Self-diffraction arises for two laser beams intersecting in the cell with colloidal CdSe/ZnS quantum dots (QDs) due to the dynamic phase grating formatting. The calculated induced change in the refractive is sufficient to form a phase diffraction grating. Such a large value of x~((3)) as compared to the third-order nonlinear susceptibility for the solvent (hexane) is due to the increase in x~((3)) occurring when the intermediate resonance is attained in a medium transparent for laser radiation. In order to identify physical processes responsible for the induced grating formation and the diffraction efficiency self-diffracted pulse intensity dependences on the incident pulse intensity were measured for two samples of colloidal QD CdSe/ZnS, which frequency of the fundamental exciton transition is tuned to the high-frequency and low-frequency region from the double laser frequency. The discovered cubic dependence of the self-diffracted pulse intensity on the incident pulse intensity was explained by four-wave mixing process. Discovered above 5-th index of power dependence of the self-diffracted pulse intensity on the excitation pulses intensity we explained by the increasing magnitude of two-photon absorption (due to shifting of two photons energy of laser radiation to the exact exciton absorption resonance by red Stark shift of the exciton absorption), accompanied by the growth absorption by two-photon excited carriers that leads to the induced amplitude grating formation in addition to the phase grating.
机译:在胶体CdSe / ZnS量子点中的激子的双光子共振激发的情况下,已经发现了非线性和电光过程的特征。由于动态相位光栅格式化,在单元中与胶体CdSe / ZnS量子点(QDs)相交的两个激光束会产生自衍射。计算得出的折射引起的变化足以形成相位衍射光栅。与溶剂(己烷)的三阶非线性磁化率相比,x〜((3))的值如此之大是由于在介质中达到中间共振时出现的x〜((3))的增加对激光辐射透明。为了确定造成诱导光栅形成和衍射效率的物理过程,对两个胶体QD CdSe / ZnS样品测量了自衍射脉冲强度对入射脉冲强度的依赖性,将基本激子跃迁的频率调整为高频和低频区域来自双倍激光频率。通过四波混频过程解释了发现的自衍射脉冲强度对入射脉冲强度的三次依赖性。发现自衍射脉冲强度对激发脉冲强度的功率依赖性高于5指数时,我们解释了双光子吸收量的增加(由于激光辐射的两个光子能量转移到精确的激子吸收共振)激子吸收的红色斯塔克频移),伴随着两光子激发载流子的生长吸收,除相位光栅外,还导致了感应振幅光栅的形成。

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