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首页> 外文期刊>The Journal of Chemical Physics >Entangled two-photon absorption spectroscopy for optically forbidden transition detection
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Entangled two-photon absorption spectroscopy for optically forbidden transition detection

机译:用于光学禁止的过渡检测的纠缠双光子吸收光谱

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摘要

We theoretically propose a spectroscopic method for measuring optically forbidden states using entangled two-photon absorption (TPA). As a model system, we consider a diatomic molecular system consisting of three adiabatic potentials, namely, ground, intermediate, and excited states, where the intermediate state cannot be directly excited from the ground state. In our method, we pump the excited state using entangled TPA and indirectly measure the optically forbidden intermediate state through the photon emission from the excited state to the intermediate state. The condition required for this method is only that the transition rate between the excited and intermediate states is sufficiently high. Using our proposed method, we show that the optically forbidden state can be detected with a high degree of accuracy when highly efficient and selective TPA is realized. Published under license by AIP Publishing.
机译:理论上,我们提出了一种光谱法,用于使用缠结的双光子吸收(TPA)测量光学禁止的状态。 作为模型系统,我们考虑由三个绝热电位,即地,中间和激发状态组成的硅藻分子系统,其中中间状态不能直接从地面激发。 在我们的方法中,我们利用缠绕的TPA泵浦激发态,并通过从激发状态的光子发射间接测量光学禁止的中间状态到中间状态。 该方法所需的条件仅是激发和中间状态之间的过渡率足够高。 使用我们所提出的方法,我们表明,当实现高效且选择性的TPA时,可以以高精度检测光学禁止的状态。 通过AIP发布在许可证下发布。

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