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2021 年度 実施状況報告書

Time-dependent rovibronic wavefunctions of diatomic molecules

研究課題

研究課題/領域番号 21K04990
研究機関東京大学

研究代表者

LOETSTEDT ERIK  東京大学, 大学院理学系研究科(理学部), 准教授 (80632984)

研究期間 (年度) 2021-04-01 – 2024-03-31
キーワードTDSE / Particle correlation / Numerical methods / Strong laser field
研究実績の概要

During the fiscal year 2021, I have made preparatory studies of the methods that I plan to use for the simulation of a complete time-dependent wave function including electronic, vibrational, and rotational degrees of freedom.
The preparatory studies have been of two types: (i) estimation of the total number of partial waves required in the expansion of a typical rovibronic wave function, and (ii) modification of a code used for time-dependent simulation of atomic systems to enable the simulation of diatomic molecules. The result of (i) indicates that the number of partial waves required in the wave function expansion is small enough for the planned simulations to be realizable.

現在までの達成度 (区分)
現在までの達成度 (区分)

2: おおむね順調に進展している

理由

After the initial tests and assessments performed in fiscal year 2021 (summarized in “Summary of Research Achievements” above), I feel confident that the proposed method will work as planned. Furthermore, I have realized that my existing code for atom-laser interaction can be modified in a suitable way so that it can be applied also to the simulation of diatomic molecules in intense laser fields.

今後の研究の推進方策

In the coming fiscal year 2022, I plan to start writing a code for the simulation of a complete time-dependent wave function of a diatomic molecule using the extended multiconfiguration time-dependent Hartree-Fock method.
For a proof-of-principle demonstration, the single-electron molecule H2+ is suitable, because it is possible to compare the results obtained with the newly proposed method with other methods such as the Born-Oppenheimer approximation. The first step should be to obtain an accurate rovibronic ground state. The key scientific question is how well the electron-nucleus correlation can be described.

次年度使用額が生じた理由

Because of the COVID pandemic, all scientific meetings (international and domestic) were held online, which means that costs for airplane tickets and hotels did not arise.
The unused amount will be be used for attending in-person scientific meetings during 2022 if the circumstances allow.

備考

Web page of Yamanouchi laboratory.

  • 研究成果

    (3件)

すべて 2021 その他

すべて 学会発表 (2件) (うち国際学会 2件、 招待講演 2件) 備考 (1件)

  • [学会発表] Theoretical modeling of strong-field excitation of N2+2021

    • 著者名/発表者名
      Erik Loetstedt
    • 学会等名
      International summer school on theoretical aspects of air lasing
    • 国際学会 / 招待講演
  • [学会発表] Air lasing by population inversion in N2 + induced by strong-field coherent coupling of the X, A and B states2021

    • 著者名/発表者名
      Erik Loetstedt
    • 学会等名
      Asian International Symposium at the Annual Meeting of the Chemical Society of Japan
    • 国際学会 / 招待講演
  • [備考] http://www.yamanouchi-lab.org/e/index.html

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公開日: 2022-12-28  

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