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      FTIR spectroscopy as a tool for nano-material characterization

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      Infrared Physics & Technology
      Elsevier BV

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          Generalized Gradient Approximation Made Simple

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            Theoretical studies of icosahedral C60 and some related species

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              The calculation of the vibrational frequencies of crystalline compounds and its implementation in the CRYSTAL code

              The problem of numerical accuracy in the calculation of vibrational frequencies of crystalline compounds from the hessian matrix is discussed with reference to alpha-quartz (SiO(2)) as a case study and to the specific implementation in the CRYSTAL code. The Hessian matrix is obtained by numerical differentiation of the analytical gradient of the energy with respect to the atomic positions. The process of calculating vibrational frequencies involves two steps: the determination of the equilibrium geometry, and the calculation of the frequencies themselves. The parameters controlling the truncation of the Coulomb and exchange series in Hartree-Fock, the quality of the grid used for the numerical integration of the Exchange-correlation potential in Density Functional Theory, the SCF convergence criteria, the parameters controlling the convergence of the optimization process as well as those controlling the accuracy of the numerical calculation of the Hessian matrix can influence the obtained vibrational frequencies to some extent. The effect of all these parameters is discussed and documented. It is concluded that with relatively economical computational conditions the uncertainty related to these parameters is smaller than 2-4 cm(-1). In the case of the Local Density Approximation scheme, comparison is possible with recent calculations performed with a Density Functional Perturbation Theory method and a plane-wave basis set.
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                Author and article information

                Journal
                Infrared Physics & Technology
                Infrared Physics & Technology
                Elsevier BV
                13504495
                November 2010
                November 2010
                : 53
                : 6
                : 434-438
                Article
                10.1016/j.infrared.2010.09.002
                32111dd3-f7f2-4737-8084-f5e27f809f18
                © 2010

                https://www.elsevier.com/tdm/userlicense/1.0/

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