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Linear and non-linear response phenomena of molecular systems
Linear and non-linear response phenomena of molecular systems

Course - Studenti
Course - Studenti

Nonequilibrium Green`s function approach
Nonequilibrium Green`s function approach

Coherent states and projective representation of the linear canonical
Coherent states and projective representation of the linear canonical

Non-Hermitian Hamiltonians of Lie algebraic type
Non-Hermitian Hamiltonians of Lie algebraic type

53. B. Sc. Physical Science
53. B. Sc. Physical Science

Path Resummations and the Fermion Sign Problem
Path Resummations and the Fermion Sign Problem

... In a recent paper [1], we have proposed a method to perform quantum Monte Carlo (QMC) simulations of Fermion systems based on the idea of sampling “graphs”, rather than “paths”. The latter, being rooted in Feynman’s “realspace imaginary-time” path-integral (PI) theory [2–4], has been the paradigmati ...
Test of the consistency of various linearized semiclassical initial
Test of the consistency of various linearized semiclassical initial

Quantum Chemistry for Spectroscopy – A Tale of Three Spins (S = 0
Quantum Chemistry for Spectroscopy – A Tale of Three Spins (S = 0

... thesis. First and foremost, I want to express my gratitude to Prof. Robert W. Field for devoting an enormous investment of time and patience to teaching me about the spectroscopy of small molecules. I would like to thank Bob for constantly reminding me that there is often simplicity behind every com ...
Comparison of density functionals for energy and structural
Comparison of density functionals for energy and structural

Is CO a Special Ligand in Organometallic Chemistry? Theoretical
Is CO a Special Ligand in Organometallic Chemistry? Theoretical

Density instabilities in multi-layer dipolar Fermi gases
Density instabilities in multi-layer dipolar Fermi gases

... enhanced technology in this sense. In particular, experimental success in trapping and cooling polar atoms and molecules has attracted huge interest in the study of quantum gases of particles with high electric and magnetic dipolar moments. The dipole-dipole interaction is an anisotropic and long-ra ...
syllabus for two‐year four‐semester course in chemistry 2014
syllabus for two‐year four‐semester course in chemistry 2014

Schrödinger operators and their spectra
Schrödinger operators and their spectra

Quantum Nonlinear Optics in Lossy Coupled-Cavities in Photonic Crystal Slabs
Quantum Nonlinear Optics in Lossy Coupled-Cavities in Photonic Crystal Slabs

M.Sc.Course - Department of Chemistry, IIT Bombay
M.Sc.Course - Department of Chemistry, IIT Bombay

... hydrogen atom. Spin, spin orbitals, and characteristics of a many-electron wave function. Variation theorem, variation method, the linear variation method, and the non-crossing rule. Applications: Many-electron atoms, self-consistent field, atomic orbitals, Slater Type Orbitals, Slater exponents and ...
Dynamics of Open Quantum Systems
Dynamics of Open Quantum Systems

Introduction to Integrable Models
Introduction to Integrable Models

Version 1.6 - Clark Science Center
Version 1.6 - Clark Science Center

... sense when data appear weird; when they are wrong by some human error, or when they are telling the observer to modify her understanding because it does not work. To teach this skill there are numbers in this document that have been made weird intentionally. Look at what you see critically and ask ” ...
Overview Density functional calculations of NMR chemical shifts and
Overview Density functional calculations of NMR chemical shifts and

Coupling-Matrix Approach to the Chern Number Calculation in
Coupling-Matrix Approach to the Chern Number Calculation in

... the procedure of the exact diagonalization is greatly simplified. However, it involves somewhat complicated multiple commutators between the coordinate operators and projection operators. In some cases, the Chern number can be extracted indirectly from the transport coefficients, which can be relati ...
Predissociation dynamics of lithium iodide
Predissociation dynamics of lithium iodide

... open-shell spin-restricted coupled cluster method with single, double and non-iterative triple excitations, RCCSD(T),38 which is a fully size-consistent method. The single reference coupled cluster method can be used here since these are the lowest high-spin states in a given symmetry. The long-rang ...
89 - APS Link Manager - American Physical Society
89 - APS Link Manager - American Physical Society

Communication: creation of molecular vibrational motions via the
Communication: creation of molecular vibrational motions via the

Elliptic Preconditioner for Accelerating the Self
Elliptic Preconditioner for Accelerating the Self

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Coupled cluster

Coupled cluster (CC) is a numerical technique used for describing many-body systems. Its most common use is as one of several post-Hartree–Fock ab initio quantum chemistry methods in the field of computational chemistry. It essentially takes the basic Hartree–Fock molecular orbital method and constructs multi-electron wavefunctions using the exponential cluster operator to account for electron correlation. Some of the most accurate calculations for small to medium-sized molecules use this method.The method was initially developed by Fritz Coester and Hermann Kümmel in the 1950s for studying nuclear physics phenomena, but became more frequently used when in 1966 Jiři Čížek (and later together with Josef Paldus) reformulated the method for electron correlation in atoms and molecules. It is now one of the most prevalent methods in quantum chemistry that includes electronic correlation.CC theory is simply the perturbative variant of the Many Electron Theory (MET) of Oktay Sinanoğlu, which is the exact (and variational) solution of the many electron problem, so it was also called ""Coupled Pair MET (CPMET)"". J. Čížek used the correlation function of MET and used Goldstone type perturbation theory to get the energy expression while original MET was completely variational. Čížek first developed the Linear-CPMET and then generalized it to full CPMET in the same paper in 1966. He then also performed an application of it on benzene molecule with O. Sinanoğlu in the same year. Because MET is somewhat difficult to perform computationally, CC is simpler and thus, in today's computational chemistry, CC is the best variant of MET and gives highly accurate results in comparison to experiments.
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