An efficient low-order scaling method is presented for large-scale electronic structure calculations based on the density-functional theory using localized basis functions, which directly computes selected elements of the density matrix by a contour integration of the Green’s function evaluated with a nested dissection approach for resultant sparse matrices. The computational effort of the method scales as O[N(log_2 N)^2], O(N^2), and O(N^) for one-, two-, and three-dimensional systems, respectively, where N is the number of basis functions. Unlike O(N) methods developed so far the approach is a numerically exact alternative to conventional O(N^3) diagonalization schemes in spite of the low-order scaling, and can be applicable to not only i...
We demonstrate that Daubechies wavelets can be used to construct a minimal set of optimized localize...
We present a new approach to density functional theory, which does not require the calculation of Ko...
The aim of electronic structure calculations is to simulate behavior of complex materials by resolvi...
We consider the problem of developing O(N) scaling grid based operations needed in many central oper...
A novel low complexity method to perform self-consistent electronic-structure calculations using the...
We formulate the Kohn-Sham density functional theory in terms of nonorthogonal, localized orbitals. ...
We present a linear scaling 3 dimensional fragment (LS3DF) method that uses a novel decomposition a...
Linear-scaling electronic structure methods are essential for calculations on large systems. Some of...
We describe a novel iterative strategy for Kohn-Sham density functional theory calculations aimed at...
We present a new linear scaling ab initio total energy electronic structure calculation method based...
Development of new materials needs better understanding of the behavior of materials at nanoscale wh...
We consider the problem of developing O(N) scaling grid based operations needed in many central oper...
We present a linear scaling 3 dimensional fragment (LS3DF)method that uses a novel decomposition and...
The main bottleneck in modeling transport in molecular devices is to develop the correct formulation...
Efficient and accurate methods for computing the density matrix are necessary to be able to perform ...
We demonstrate that Daubechies wavelets can be used to construct a minimal set of optimized localize...
We present a new approach to density functional theory, which does not require the calculation of Ko...
The aim of electronic structure calculations is to simulate behavior of complex materials by resolvi...
We consider the problem of developing O(N) scaling grid based operations needed in many central oper...
A novel low complexity method to perform self-consistent electronic-structure calculations using the...
We formulate the Kohn-Sham density functional theory in terms of nonorthogonal, localized orbitals. ...
We present a linear scaling 3 dimensional fragment (LS3DF) method that uses a novel decomposition a...
Linear-scaling electronic structure methods are essential for calculations on large systems. Some of...
We describe a novel iterative strategy for Kohn-Sham density functional theory calculations aimed at...
We present a new linear scaling ab initio total energy electronic structure calculation method based...
Development of new materials needs better understanding of the behavior of materials at nanoscale wh...
We consider the problem of developing O(N) scaling grid based operations needed in many central oper...
We present a linear scaling 3 dimensional fragment (LS3DF)method that uses a novel decomposition and...
The main bottleneck in modeling transport in molecular devices is to develop the correct formulation...
Efficient and accurate methods for computing the density matrix are necessary to be able to perform ...
We demonstrate that Daubechies wavelets can be used to construct a minimal set of optimized localize...
We present a new approach to density functional theory, which does not require the calculation of Ko...
The aim of electronic structure calculations is to simulate behavior of complex materials by resolvi...