• 研究課題をさがす
  • 研究者をさがす
  • KAKENの使い方
  1. 課題ページに戻る

2018 年度 実施状況報告書

Efficient simulation of coupled electronic and nuclear motion in molecules in intense laser fields

研究課題

研究課題/領域番号 18K05024
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), 助教 (80632984)

研究期間 (年度) 2018-04-01 – 2021-03-31
キーワードStrong-field physics / TDSE / Hartree-Fock
研究実績の概要

My research efforts during FY2018 have been concentrated on two research projects:
(1) The application of the extended multiconfiguration time-dependent Hartree-Fock (Ex-MCTDHF) method to the simulation of laser-induced ionization, excitation and dissociation of the hydrogen molecular ion H2+. In the Ex-MCTDHF method the total time-dependent wave function of a molecule, including both the electronic as well as the nuclear degrees of freedom, can be calculated without using potential energy surfaces. However, the Ex-MCTDHF method had not been shown to work efficiently for molecules in laser fields. I showed that the Ex-MCTDHF method can indeed describe both vibrational excitation, dissociation, and ionization of H2+, demonstrating that the Ex-MCTDHF method is a promising method for the simulation of the coupled electron-nuclear dynamics of small molecules in intense laser fields.
(2) In the Ex-MCTDHF method as well as in the related MCTDHF method for electrons, the equation of motion for the electronic orbitals is a non-linear equation. I showed, together with collaborators from Germany and Hungary, that this non-linearity may result in an unphysical oscillation of the population of excited states during field-free propagation of the wave function. Stationary populations can be obtained if the number of active orbitals is large enough. I carried out numerical calculations of the time-dependent populations in the excited states of a helium atom exposed to intense VUV laser pulses. These results are currently being prepared for publication.

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

An important step was achieved by the successful simulation of excitation and dissociation of H2+ in intense laser fields, as described above in “Summary of research achievements”. This simulation showed that the Ex-MCTDHF method can describe ionization, electronic and vibrational excitation and dissociation occurring simultaneously in an intense laser field. Because this first, proof-of-principle simulation succeeded, it is meaningful to proceed further and apply the Ex-MCTDHF method to the simulation of larger molecules, and also to try to make the simulation procedure more efficient.
The findings described above under item (2) are important, since they suggest a way of assessing the accuracy of theories such as MCTDHF and Ex-MCTDHF. An (Ex-)MCTDHF wave function can be considered to be converged with respect to the number of time-dependent orbitals when the populations are stationary under field-free propagation.

今後の研究の推進方策

During FY2019, the main effort will be spent on applying the Ex-MCTDHF method to the hydrogen molecule, H2. H2 contains 2 electrons, and is therefore more demanding than H2+, since a proper treatment of the electron-electron interaction has to be considered. I aim to simulate the complete electro-nuclear wave function of H2, including all degrees of freedom: rotational, vibrational, and electronic. If successful, a simulation of the complete rovibronic wave function of H2 in intense laser fields with the Ex-MCTDHF method would be the first of its kind. As a first step, I will implement the Ex-MCTDHF equations of motion and calculate the ground state wave function by imaginary time propagation. After confirming that the rovibronic ground state of H2 can be obtained within the Ex-MCTDHF method and checking that the results are consistent with other calculations, real-time simulations can be initialized.
I will also consider how the Ex-MCTDHF method can be further optimized, or how the simulations can be performed in a more efficient way. The optimization will be pursued along the lines in the submitted proposal: (i) Combining the Ex-MCTDHF method with the standard BO approximation, and (ii) Dynamical configuration-space adaptation.

次年度使用額が生じた理由

When a new workstation was to be purchased in February 2019, a Dell workstation with the desired specification was found to be slightly cheaper than expected.
The remaining amount will be used to purchase reference literature during FY 2019.

備考

Publications related to the research project will be announced at the web page of the Yamanouchi lab.

  • 研究成果

    (12件)

すべて 2019 2018 その他

すべて 国際共同研究 (2件) 雑誌論文 (2件) (うち査読あり 2件) 学会発表 (7件) (うち国際学会 5件、 招待講演 3件) 備考 (1件)

  • [国際共同研究] Eotvos Lorand University(ハンガリー)

    • 国名
      ハンガリー
    • 外国機関名
      Eotvos Lorand University
  • [国際共同研究] Bielefeld University(ドイツ)

    • 国名
      ドイツ
    • 外国機関名
      Bielefeld University
  • [雑誌論文] Time-dependent multiconfiguration method applied to laser-driven H2+2019

    • 著者名/発表者名
      Loetstedt Erik、Kato Tsuyoshi、Yamanouchi Kaoru
    • 雑誌名

      Physical Review A

      巻: 99 ページ: 013404-1~17

    • DOI

      10.1103/PhysRevA.99.013404

    • 査読あり
  • [雑誌論文] Methods for the Simulation of Coupled Electronic and Nuclear Motion in Molecules Beyond the Born-Oppenheimer Approximation2019

    • 著者名/発表者名
      Loetstedt Erik、Kato Tsuyoshi、Yamanouchi Kaoru
    • 雑誌名

      Springer Series in Chemical Physics: Progress in Photon Science, Recent Advances

      巻: 119 ページ: 197~220

    • DOI

      10.1007/978-3-030-05974-3_10

    • 査読あり
  • [学会発表] Time-dependent multiconfiguration theory applied to the simulation of H2+ in intense laser fields2018

    • 著者名/発表者名
      Erik Loetstedt, Tsuyoshi Kato, and Kaoru Yamanouchi
    • 学会等名
      The 9th Shanghai-Tokyo Advanced Research Symposium on Ultrafast Intense Laser Science
    • 国際学会 / 招待講演
  • [学会発表] Time-dependent multiconfiguration methods for the simulation of laser-atom and laser-molecule interaction2018

    • 著者名/発表者名
      Erik Loetstedt, Tsuyoshi Kato, and Kaoru Yamanouchi
    • 学会等名
      International Symposium on Ultrafast Intense Laser Science 2018
    • 国際学会 / 招待講演
  • [学会発表] Time-dependent multiconfiguration methods for the simulation of laser-atom and laser-molecule interaction2018

    • 著者名/発表者名
      Erik Loetstedt, Tsuyoshi Kato, and Kaoru Yamanouchi
    • 学会等名
      International Workshop Attosecond Physics at the Nanoscale
    • 国際学会 / 招待講演
  • [学会発表] Laser-induced dynamics of H2+ by a time-dependent multiconfiguration method2018

    • 著者名/発表者名
      Erik Loetstedt, Tsuyoshi Kato, and Kaoru Yamanouchi
    • 学会等名
      Symposium on Chemical Kinetics and Dynamics
  • [学会発表] Excited-state populations of He exposed to intense laser fields by the multiconfiguration time-dependent Hartree-Fock method2018

    • 著者名/発表者名
      Erik Loetstedt, Tamas Szidarovszky, Farhad H. M. Faisal, Tsuyoshi Kato, and Kaoru Yamanouchi
    • 学会等名
      Annual meeting of the Japan Society for Molecular Science
  • [学会発表] Excited-state populations in laser-driven He by the multiconfiguration time-dependent Hartree-Fock method2018

    • 著者名/発表者名
      Erik Loetstedt, Tamas Szidarovszky, Farhad H. M. Faisal, Tsuyoshi Kato, and Kaoru Yamanouchi
    • 学会等名
      International Symposium on Ultrafast Intense Laser Science 2018
    • 国際学会
  • [学会発表] Laser-driven dynamics of H2+ by a time-dependent multiconfiguration method2018

    • 著者名/発表者名
      Erik Loetstedt, Tsuyoshi Kato, and Kaoru Yamanouchi
    • 学会等名
      3rd ETH Zurich-UTokyo Strategic Partnership Symposium
    • 国際学会
  • [備考] Webpage of the Yamanouchi lab

    • URL

      http://www.yamanouchi-lab.org/index.html

URL: 

公開日: 2019-12-27  

サービス概要 検索マニュアル よくある質問 お知らせ 利用規程 科研費による研究の帰属

Powered by NII kakenhi