\begin{document}$ \rm H_3^{2+} $\end{document} with two different geometrical structures by monochromatic and bichromatic laser fields, and given the detailed analysis of the spectra for each case. Compared with the monochromatic laser field, it is found that the ATI spectrum by the bichromatic laser field is more sensitive to the geometrical configuration of molecular ion, thereby it can be applied to identify the different geometrical structure of molecules. In the case of bichromatic laser fields, the direct ATI spectrum show different interference fringes with different molecular configurations. We give the beginning and cutoff curves of each platform by employing the saddle-point approximation. Furthermore, we derive the destructive curves formulas for different molecular configurations in angle-resolved direct ATI energy spectra and momentum spectra, respectively, which carries the information about themolecular structure. In addition, it is found that the shape of the spectra can be modified by changing the molecular internuclear distance or varying the laser intensity. Thereby, it can be inferred that the ATI spectrum induced by bichromatic laser field has the ability to identify different configurations of the same molecules, which is instructive to image geometrical structure of complex molecules."> Identifying two different configurations of the <inline-formula><tex-math id="Z-20200330064922-1">\begin{document}$ \rm H_3^{2+} $\end{document}</tex-math><alternatives><graphic xmlns:xlink="http://www.w3.org/1999/xlink" xlink:href="7-20200013_Z-20200330064922-1.jpg"/><graphic xmlns:xlink="http://www.w3.org/1999/xlink" xlink:href="7-20200013_Z-20200330064922-1.png"/></alternatives></inline-formula> by the direct above-threshold ionization spectrum in two-color laser field - 必威体育下载

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    Identifying two different configurations of the $ \rm H_3^{2+} $ by the direct above-threshold ionization spectrum in two-color laser field

    Zhou Xu-Cong, Shi Shang, Li Fei, Meng Qing-Tian, Wang Bing-Bing
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    • Abstract views:5757
    • PDF Downloads:51
    • Cited By:0
    Publishing process
    • Received Date:03 January 2020
    • Accepted Date:11 February 2020
    • Published Online:05 April 2020

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