ergo 3.3.1-2 source package in Ubuntu

Changelog

ergo (3.3.1-2) unstable; urgency=low


  * debian/patches/integrals_hermite_mips.patch: New patch, fixes a FTBFS error
    on mips/mipsel by undefining the R3000 identifier which is already defined
    on those architectures, by Jurica Stanojkovic.

 -- Michael Banck <email address hidden>  Sat, 26 Oct 2013 11:05:49 +0200

Upload details

Uploaded by:
Debichem Team
Uploaded to:
Sid
Original maintainer:
Debichem Team
Architectures:
any
Section:
misc
Urgency:
Low Urgency

See full publishing history Publishing

Series Pocket Published Component Section
Trusty release universe misc

Downloads

File Size SHA-256 Checksum
ergo_3.3.1-2.dsc 1.3 KiB 3d5a22873a8961528c5ee20a74eb517d2c2bcc9dfdbac0afd921e2c74d524b59
ergo_3.3.1.orig.tar.gz 2.9 MiB 0d0341384c5edc60dc2798756c7b702124767098868593db42159f0f6d13755a
ergo_3.3.1-2.debian.tar.gz 3.4 KiB 54bb1279525bb316490457c8543eede5e92f3e04f106e0a272a778530b94027d

Available diffs

No changes file available.

Binary packages built by this source

ergo: Quantum chemistry program for large-scale calculations

 ErgoSCF is a quantum chemistry program for large-scale self-consistent field
 calculations. It employs modern linear scaling techniques like fast multipole
 methods, hierarchic sparse matrix algebra, density matrix purification, and
 efficient integral screening. Linear scaling is achieved not only in terms of
 CPU usage but also memory utilization. It uses Gaussian basis sets.
 .
 It can compute single-point energies for the following methods:
  * Restricted and unrestricted Hartree-Fock (HF) theory
  * Restricted and unrestricted Kohn-Sham density functional theory (DFT)
  * Full Configuration-Interaction (FCI)
 .
 The following Exchange-Correlational (XC) density functionals are included:
  * Local Density Approximation (LDA)
  * Gradient-corrected (GGA) XC functionals BLYP, BP86, PW91 and PBE
  * Hybrid XC functionals B3LYP, BHandHLYP, PBE0 and CAMB3LYP
 .
 Further features include:
  * Linear response calculations (polarizabilities and excitation energies) for
    restricted reference densities
  * External electric fields
  * Electron dynamics via Time-Dependent Hartree-Fock (TDHF)