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Shaped and Feedback-Controlled Excitation of SingleMolecules in the Weak-Field Limit

机译:单一形状和反馈控制的激励弱场极限中的分子

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摘要

Coherent control uses tailored femtosecond pulse shapes to influence quantum pathways and drive a light-induced process toward a specific outcome. There has been a long-standing debate whether the absorption properties or the probability for population to remain in an excited state of a molecule can be influenced by the pulse shape, even if only a single photon is absorbed. Most such experiments are performed on many molecules simultaneously, so that ensemble averaging reduces the access to quantum effects. Here, we demonstrate systematic coherent control experiments on the fluorescence intensity of a single molecule in the weak-field limit. We demonstrate that a delay scan of interfering pulses reproduces the excitation spectrum of the molecule upon Fourier transformation, but that the spectral phase of a pulse sequence does not affect the transition probability. We generalize this result to arbitrary pulse shapes by performing the first closed-loop coherent control experiments on a single molecule.
机译:相干控制使用量身定制的飞秒脉冲形状来影响量子路径,并驱动光诱导过程达到特定结果。即使仅吸收单个光子,脉冲形状也会影响吸收特性或分子保持在分子激发态的可能性是否存在,这是一个长期存在的争论。大多数此类实验是同时在许多分子上进行的,因此集成平均减少了获得量子效应的机会。在这里,我们展示了在弱场限制下单个分子的荧光强度的系统相干控制实验。我们证明了干扰脉冲的延迟扫描在傅立叶变换时会重现分子的激发光谱,但脉冲序列的光谱相位不会影响跃迁概率。通过对单个分子执行第一个闭环相干控制实验,我们将该结果概括为任意脉冲形状。

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