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新しい相対論的電子状態理論による重原子分子の電子状態及び化学反応の解明

Research Project

Project/Area Number 12750726
Research Category

Grant-in-Aid for Encouragement of Young Scientists (A)

Allocation TypeSingle-year Grants
Research Field 工業物理化学
Research InstitutionThe University of Tokyo

Principal Investigator

中嶋 隆人  東京大学, 大学院・工学系研究科, 助手 (10312993)

Project Period (FY) 2000 – 2001
Project Status Completed (Fiscal Year 2001)
Budget Amount *help
¥2,100,000 (Direct Cost: ¥2,100,000)
Fiscal Year 2001: ¥1,000,000 (Direct Cost: ¥1,000,000)
Fiscal Year 2000: ¥1,100,000 (Direct Cost: ¥1,100,000)
Keywords相対論効果 / 高次Douglas-Kroll法 / 相対論的近似理論 / 電子状態理論 / 励起状態
Research Abstract

相体論的電子状態理論の開発とその応用
重い原子を含む系を研究する際には相対論効果が非常に重要になってくる.理論的に相対論効果を考慮するため,非相対論的なSchrodinger方程式を解くかわりに,Dirac方程式が用いられる.しかしながら,Dirac方程式はlarge成分とsmall成分からなる4成分spinorを持つため計算コストが高く,これまでは分子への適用は小さな系に限られてきた.そこで,4成分Dirac方程式をより大きな分子に適用できるようにするため,この方程式を解くための効率的な計算スキームに基づき,相対論的なHartree-Fock法及Kohn-Sham密度汎関数法の計算プログラムを開発した.また,更に大規模な分子系において相対論効果を考慮するためには,4成分のDirac方程式を明白に解くかわりに,ある相対論的近似を行うことが効率的になる.我々はこれまでにDirac方程式の持つsmall成分を消去することにより,RESC法と呼ぶ新しい相対論的電子状態理論を開発してきた.最近では高次Douglas-Kroll法と呼ぶ相対論的近似理論も新たに開発している.そして重原子を含む分子系の基底状態と励起状態の計算にこれらの方法を適用し,重原子分子の電子状態の解明を試みた.

Report

(2 results)
  • 2001 Annual Research Report
  • 2000 Annual Research Report
  • Research Products

    (11 results)

All Other

All Publications (11 results)

  • [Publications] T.Yanai, H.Iikura, T.Nakajima, Y.Ishikawa, K.Hirao: "An accurate four-component relativistic-density functional method for heavy-atom polyatomic systems"J. Chem. Phys.. 115. 8267-8273 (2001)

    • Related Report
      2001 Annual Research Report
  • [Publications] T.Tsuchiya, M.Abe, T.Nakajima, K.Hirao: "Accurate relativistic Gaussian basis sets for H through Lr determined by atomic SCF calculations with the third-order Douglas-Kroll approximation"J. Chem. Phys.. 115. 4463-4472 (2001)

    • Related Report
      2001 Annual Research Report
  • [Publications] Y.Akinaga, T.Nakajima, K.Hirao: "A density functional study on the adsorption of methanethiolate on the (111) surfaces of noble metals"J. Chem. Phys.. 114. 8555-8564 (2001)

    • Related Report
      2001 Annual Research Report
  • [Publications] D.G.Fedorov, T.Nakajima, K.Hirao: "Analytic gradient for the relativistic elimination of small-components (RESCs) approach"Chem. Phys. Lett.. 335. 183-187 (2001)

    • Related Report
      2001 Annual Research Report
  • [Publications] T.Nakajima, K.Hirao: "Relativistic effects for polarizabilities and hyperpolarizabilities of rare gas atoms"Chem. Lett.. 2001. 766-767 (2001)

    • Related Report
      2001 Annual Research Report
  • [Publications] T.Yanai, T.Nakajima, Y.Ishikawa, K.Hirao: "A new computational scheme for the Dirac-Hartree-Fock method employing an efficient integral algorithm"J. Chem. Phys.. 114. 6526-6538 (2001)

    • Related Report
      2001 Annual Research Report
  • [Publications] T.Nakajima: "Theoretical Study of Valence Photoelectron Spectrum of OsO4 : A Spin-Orbit RESC-CASPT2 Study"J.Chem.Phys.. 112. 10142-10148 (2000)

    • Related Report
      2000 Annual Research Report
  • [Publications] T.Nakajima: "The higher-order Douglas-Kroll transformation"J.Chem.Phys.. 113. 7786-7789 (2000)

    • Related Report
      2000 Annual Research Report
  • [Publications] H.Witek: "Relativistic and correlated all-electron calculations on the ground and excited states of AgH and AuH"J.Chem.Phys.. 113. 8015-8025 (2000)

    • Related Report
      2000 Annual Research Report
  • [Publications] T.Nakajima: "Numerical illustration of third-order Douglas-Kroll method : Atomic and molecular properties of superheavy element 112"Chem.Phys.Lett.. 329. 511-516 (2000)

    • Related Report
      2000 Annual Research Report
  • [Publications] S.Yanagisawa: "The Relativistic Effect on Energies of Light Elements : A RESC-BOP Study"Theochem. 537. 63-70 (2000)

    • Related Report
      2000 Annual Research Report

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Published: 2000-04-01   Modified: 2016-04-21  

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