Exchange-correlation kernel for perturbation dependent auxiliary functions in auxiliary density perturbation theory
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Hernandez-Segura, Luis I.
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CINVESTAV, Chem Dept, Ave Inst Politecn Nacl 2508,Col San Pedro Zacatenc, Mexico City 07360, MexicoCINVESTAV, Chem Dept, Ave Inst Politecn Nacl 2508,Col San Pedro Zacatenc, Mexico City 07360, Mexico
Hernandez-Segura, Luis I.
[1
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Olvera-Rubalcava, Flor A.
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CINVESTAV, Chem Dept, Ave Inst Politecn Nacl 2508,Col San Pedro Zacatenc, Mexico City 07360, MexicoCINVESTAV, Chem Dept, Ave Inst Politecn Nacl 2508,Col San Pedro Zacatenc, Mexico City 07360, Mexico
Olvera-Rubalcava, Flor A.
[1
]
Flores-Moreno, Roberto
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Univ Guadalajara, Dept Quim, Blvd Gral Marcelino Garcia Barragan 1421, Guadalajara 44430, Jal, MexicoCINVESTAV, Chem Dept, Ave Inst Politecn Nacl 2508,Col San Pedro Zacatenc, Mexico City 07360, Mexico
Flores-Moreno, Roberto
[2
]
Calaminici, Patrizia
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CINVESTAV, Chem Dept, Ave Inst Politecn Nacl 2508,Col San Pedro Zacatenc, Mexico City 07360, MexicoCINVESTAV, Chem Dept, Ave Inst Politecn Nacl 2508,Col San Pedro Zacatenc, Mexico City 07360, Mexico
Calaminici, Patrizia
[1
]
Koester, Andreas M.
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CINVESTAV, Chem Dept, Ave Inst Politecn Nacl 2508,Col San Pedro Zacatenc, Mexico City 07360, MexicoCINVESTAV, Chem Dept, Ave Inst Politecn Nacl 2508,Col San Pedro Zacatenc, Mexico City 07360, Mexico
Koester, Andreas M.
[1
]
机构:
[1] CINVESTAV, Chem Dept, Ave Inst Politecn Nacl 2508,Col San Pedro Zacatenc, Mexico City 07360, Mexico
ContextAnalytic exchange-correlation kernel formulations are of the outermost importance for density functional theory (DFT) perturbation calculations. In this paper, the working equation for the exchange-correlation kernel of the generalized gradient approximation (GGA) for perturbation dependent auxiliary functions is derived and discussed in the framework of auxiliary density functional theory (ADFT). The presented new formulation is extended to the unrestricted approach, too. A comprehensive discussion of the implementation of the GGA ADFT kernel, using either the native exchange-correlation functional implementations in deMon2k or the ones from the LibXC library, is given. Calculations with analytic exchange-correlation kernels are compared to their finite difference counterparts. The obtained results are in quantitative agreement. Nevertheless, analytic GGA ADFT kernel implementations show substantial improvement in the computational performance. Similar results are reported for analytic second derivatives of effective core potential (ECP) and model core potential (MCP) matrix elements when compared to their finite difference counterparts in molecular frequency analyses.MethodAll calculations are performed in the framework of ADFT as implemented in deMon2k. In the ADFT analytic frequency calculations, auxiliary density perturbation theory was used. The underlying two-center exchange-correlation kernel matrix elements are calculated by numerical integration either with analytic or finite difference kernel expressions. Validation calculations are performed with the VWN and PBE functionals employing DFT-optimized DZVP basis sets in conjunction with automatically generated GEN-A2 auxiliary density function sets. In the (Pt3Cu)n cluster benchmark calculations, the RPBE functional was used. For Pt atoms, the quasi-relativistic LANL2DZ effective core potential with the corresponding valence basis set was employed, whereas for Cu atoms, the all-electron DFT-optimized TZVP basis was applied. The auxiliary density was expanded by the automatically generated GEN-A2* auxiliary function set. We run all benchmark calculations in parallel on 24 cores.
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Natl Chem Lab, Div Phys Chem, Theoret Chem Grp, Pune 411008, Maharashtra, IndiaCent Electrochem Res Inst, Funct Mat Div, Karaikkudi 630006, Tamil Nadu, India
De, Himadri Sekhar
;
Krishnamurty, Sailaja
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Cent Electrochem Res Inst, Funct Mat Div, Karaikkudi 630006, Tamil Nadu, IndiaCent Electrochem Res Inst, Funct Mat Div, Karaikkudi 630006, Tamil Nadu, India
Krishnamurty, Sailaja
;
Mishra, Deepti
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Natl Chem Lab, Div Phys Chem, Theoret Chem Grp, Pune 411008, Maharashtra, IndiaCent Electrochem Res Inst, Funct Mat Div, Karaikkudi 630006, Tamil Nadu, India
Mishra, Deepti
;
Pal, Sourav
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Natl Chem Lab, Div Phys Chem, Theoret Chem Grp, Pune 411008, Maharashtra, IndiaCent Electrochem Res Inst, Funct Mat Div, Karaikkudi 630006, Tamil Nadu, India
机构:
Natl Chem Lab, Div Phys Chem, Theoret Chem Grp, Pune 411008, Maharashtra, IndiaCent Electrochem Res Inst, Funct Mat Div, Karaikkudi 630006, Tamil Nadu, India
De, Himadri Sekhar
;
Krishnamurty, Sailaja
论文数: 0引用数: 0
h-index: 0
机构:
Cent Electrochem Res Inst, Funct Mat Div, Karaikkudi 630006, Tamil Nadu, IndiaCent Electrochem Res Inst, Funct Mat Div, Karaikkudi 630006, Tamil Nadu, India
Krishnamurty, Sailaja
;
Mishra, Deepti
论文数: 0引用数: 0
h-index: 0
机构:
Natl Chem Lab, Div Phys Chem, Theoret Chem Grp, Pune 411008, Maharashtra, IndiaCent Electrochem Res Inst, Funct Mat Div, Karaikkudi 630006, Tamil Nadu, India
Mishra, Deepti
;
Pal, Sourav
论文数: 0引用数: 0
h-index: 0
机构:
Natl Chem Lab, Div Phys Chem, Theoret Chem Grp, Pune 411008, Maharashtra, IndiaCent Electrochem Res Inst, Funct Mat Div, Karaikkudi 630006, Tamil Nadu, India