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Molecular Hamiltonian

  • Chapter 4 Introduction to Molecular QM

    Chapter 4 Introduction to Molecular QM

  • Chapter 10 Theories of Electronic Molecular Structure

    Chapter 10 Theories of Electronic Molecular Structure

  • Eliminating Ground-State Dipole Moments in Quantum Optics

    Eliminating Ground-State Dipole Moments in Quantum Optics

  • Geometrical Terms in the Effective Hamiltonian for Rotor Molecules

    Geometrical Terms in the Effective Hamiltonian for Rotor Molecules

  • Solving the Schrödinger Equation of Atoms and Molecules

    Solving the Schrödinger Equation of Atoms and Molecules

  • Effective Hamiltonians: Theory and Application

    Effective Hamiltonians: Theory and Application

  • Variational Solutions for Resonances by a Finite-Difference Grid Method

    Variational Solutions for Resonances by a Finite-Difference Grid Method

  • Molecules in Magnetic Fields

    Molecules in Magnetic Fields

  • Optical Activity of Electronically Delocalized

    Optical Activity of Electronically Delocalized

  • Lecture 2 Hamiltonian Operators for Molecules CHEM6085: Density

    Lecture 2 Hamiltonian Operators for Molecules CHEM6085: Density

  • Eliminating Ground-State Dipole Moments in Quantum Optics Via Canonical Transformation

    Eliminating Ground-State Dipole Moments in Quantum Optics Via Canonical Transformation

  • A New Application of the Modal-Hamiltonian Interpretation of Quantum Mechanics: the Problem of Optical Isomerism

    A New Application of the Modal-Hamiltonian Interpretation of Quantum Mechanics: the Problem of Optical Isomerism

  • Linear Optical Response of Current-Carrying Molecular Junction

    Linear Optical Response of Current-Carrying Molecular Junction

  • Theories of Intramolecular Vibrational Energy Transfer

    Theories of Intramolecular Vibrational Energy Transfer

  • Breit-Pauli Hamiltonian and Molecular Magnetic Resonance Properties

    Breit-Pauli Hamiltonian and Molecular Magnetic Resonance Properties

  • Theoretical Study of the Nuclear Spin-Molecular Rotation Coupling for Relativistic Electrons and Non-Relativistic Nuclei Ignacio A

    Theoretical Study of the Nuclear Spin-Molecular Rotation Coupling for Relativistic Electrons and Non-Relativistic Nuclei Ignacio A

  • On the Quantum Theory of Molecules

    On the Quantum Theory of Molecules

  • Magnetic Fields Effects on the Electronic Conduction Properties of Molecular Ring Structures

    Magnetic Fields Effects on the Electronic Conduction Properties of Molecular Ring Structures

Top View
  • Molecular Transport Junctions: Vibrational Effects
  • Angular Momentum Coherences in Molecular Dynamics
  • FIRST PAGE PROOFS HRS Hrs074.Tex V1 - 10/07/2009 5:06Pm Page 2
  • Optical Response and Control of Molecular Systems
  • Molecular Structure: Separating Electronic and Nuclear Motion Notes on Quantum Mechanics
  • Molecular Second Quantized Hamiltonian: Electron Correlation and Non-Adiabatic Coupling Treated on an Equal Footing
  • Electronic Structure Calculations and the Ising Hamiltonian
  • Arxiv:0807.1907V1 [Physics.Atom-Ph] 11 Jul 2008 † ∗ Lrcl Oeuefrainhsfcse Nakl Metal on Alkali Work on Dimers
  • Littlejohn and Reinsch, 1997; Mitchell and Littlejohn, 2000)
  • Coherent Third-Order Spectroscopic Probes of Molecular Chirality
  • Arxiv:1811.04069V3 [Quant-Ph] 23 Jan 2020 in Both fields, the Majority of Investigations Have Focused in Both Time Dependent and Independent Contexts
  • On the Dynamical Description of K-K Charge Transfer in Highly Ionised Ion-Atom Collision Systems
  • Geometry of Nonadiabatic Quantum Hydrodynamics
  • Arxiv:1001.3855V3 [Quant-Ph] 19 Dec 2010 the Quality of the Description
  • Ultracold Rbsr: Optical and Magnetic Spectroscopy, Feshbach Resonances and Molecular Structure
  • On the Permutation Symmetry of Atomic and Molecular Wavefunctions
  • Quantum Description of a Rotating and Vibrating Molecule
  • Molecular Magnetic Properties


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