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26 lines
1.2 KiB
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26 lines
1.2 KiB
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==================
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ao_many_one_e_ints
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==================
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This module contains A LOT of one-electron integrals of the type
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A_ij( r ) = \int dr' phi_i(r') w(r,r') phi_j(r')
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where r is a point in real space.
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+) ao_gaus_gauss.irp.f: w(r,r') is a exp(-(r-r')^2) , and can be multiplied by x/y/z
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+) ao_erf_gauss.irp.f : w(r,r') is a exp(-(r-r')^2) erf(mu * |r-r'|)/|r-r'| , and can be multiplied by x/y/z
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+) ao_erf_gauss_grad.irp.f: w(r,r') is a exp(-(r-r')^2) erf(mu * |r-r'|)/|r-r'| , and can be multiplied by x/y/z, but evaluated with also one gradient of an AO function.
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Fit of a Slater function and corresponding integrals
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----------------------------------------------------
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The file fit_slat_gauss.irp.f contains many useful providers/routines to fit a Slater function with 20 gaussian.
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+) coef_fit_slat_gauss : coefficients of the gaussians to fit e^(-x)
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+) expo_fit_slat_gauss : exponents of the gaussians to fit e^(-x)
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Integrals involving Slater functions : stg_gauss_int.irp.f
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Taylor expansion of full correlation factor
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-------------------------------------------
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In taylor_exp.irp.f you might find interesting integrals of the type
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\int dr' exp( e^{-alpha |r-r|' - beta |r-r'|^2}) phi_i(r') phi_j(r')
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evaluated as a Taylor expansion of the exponential.
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