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Molecular response in one-photon absorption via natural thermal light vs. pulsed laser excitation

机译:自然光对单光子吸收的分子响应与脉冲激光激发的关系

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摘要

Photoinduced biological processes occur via one-photon absorption in natural light, which is weak, continuous wave, and incoherent, but are often studied in the laboratory using pulsed coherent light. Here, we compare the response of a molecule to these two very different sources within a quantized radiation field picture. The latter is shown to induce coherent time evolution in the molecule, whereas the former does not. As a result, the coherent time dependence observed in the laboratory experiments will not be relevant to the natural biological process. Emphasis is placed on resolving confusions regarding this issue that are shown to arise from aspects of quantum measurement and from a lack of appreciation of the proper description of the absorbed photon.
机译:光诱导的生物过程是通过自然光中的单光子吸收而发生的,该光较弱,连续波且不相干,但通常在实验室中使用脉冲相干光进行研究。在这里,我们比较了分子对量化辐射场图片中这两个非常不同的源的响应。已显示后者可诱导分子中相干时间的演变,而前者则不会。结果,在实验室实验中观察到的相干时间依赖性将与自然生物学过程无关。重点放在解决有关此问题的混乱上,这些混乱被证明是由于量子测量的各个方面以及对所吸收的光子的正确描述缺乏理解而引起的。

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