The difference electron density has recently been revisited via the method of joint probability distribution functions [Burla et al. (2010). Acta Cryst. A66, 347- 361]. New Fourier coefficients were devised which were the basis of a new ab initio method for the solution of the phase problem (i.e. VLD, vive la difference). In this paper we study the joint probability distribution functions P(F, Fp, Fq), where Fq is the structure factor corresponding to the ideal hybrid Fourier synthesis rhoq = trho -wrhop and t and w are any pair of real numbers. New Fourier coefficients for the calculations of any hybrid synthesis are obtained, and the properties of the corresponding electron-density maps are discussed. The first applications show the correctness of our theoretical approach and suggest possible applications in phasing procedures.

About the hybrid Fourier syntheses: a probabilistic approach

Burla MC;Carrozzini B;Cascarano GL;Giacovazzo C;
2011

Abstract

The difference electron density has recently been revisited via the method of joint probability distribution functions [Burla et al. (2010). Acta Cryst. A66, 347- 361]. New Fourier coefficients were devised which were the basis of a new ab initio method for the solution of the phase problem (i.e. VLD, vive la difference). In this paper we study the joint probability distribution functions P(F, Fp, Fq), where Fq is the structure factor corresponding to the ideal hybrid Fourier synthesis rhoq = trho -wrhop and t and w are any pair of real numbers. New Fourier coefficients for the calculations of any hybrid synthesis are obtained, and the properties of the corresponding electron-density maps are discussed. The first applications show the correctness of our theoretical approach and suggest possible applications in phasing procedures.
2011
Istituto di Cristallografia - IC
difference electron density
VLD method
hybrid Fourier syntheses
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/234459
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