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Put applications in applications/ subdir
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Authors & contributors
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=========================
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======================
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The TRIQS library has been developed and is currently maintained by :
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The TRIQS library has been developed and is currently maintained by:
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O. Parcollet (IPhT, CEA-Saclay) and M. Ferrero (CPHT, Ecole Polytechique).
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It is supported by ERC under Grant Number XXX.
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We acknowledge contributions from an increasing number of colleagues :
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We acknowledge contributions from an increasing number of colleagues:
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A. Antipov, T. Ayral, H. Hafermann, I. Krivenko, L. Messio.
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A. Antipov, T. Ayral, H. Hafermann, I. Krivenko, L. Messio.
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License
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@ -21,18 +21,19 @@ TRIQS is published under the `GNU General Public License, version 3
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Note that it *implies* that applications using TRIQS must also be GPL.
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Quotation
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=========
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..
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Quotation
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=========
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TRIQS is a part of our scientific work and we would appreciate if
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projects using it will include a citation to the following paper. In
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order to help you, we provide a BibTeX entry.
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TRIQS is a part of our scientific work and we would appreciate if
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projects using it will include a citation to the following paper. In
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order to help you, we provide a BibTeX entry.
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.. [#triqs] `AUTHORS, JOURNAL, YEAR <http://link>`_ (:download:`bibtex file <triqs.bib>`)
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.. [#triqs] `AUTHORS, JOURNAL, YEAR <http://link>`_ (:download:`bibtex file <triqs.bib>`)
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If you find TRIQS useful, giving proper reference and citation is
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indeed a simple way to help convincing funding sources that such projects are
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useful for our community and should be supported.
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If you find TRIQS useful, giving proper reference and citation is
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indeed a simple way to help convincing funding sources that such projects are
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useful for our community and should be supported.
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Disclaimer
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==========
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@ -15,7 +15,7 @@ Wien2TRIQS is an interface to Wien2k for LDA+DMFT calculation. It allows
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you to turn band-structure calculations obtained from the Wien2k package to
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inputs to full-fledged LDA+DMFT calculations in a few lines!
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*Homepage:* `<http://ipht.cea.fr/triqs/dft_tools/>`_
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*Homepage:* `<http://ipht.cea.fr/triqs/applications/dft_tools/>`_
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Hybridization-expansion matrix solver
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-------------------------------------
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@ -25,7 +25,7 @@ of a quantum impurity embedded in a conduction bath. It is based on a quantum
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Monte Carlo algorithm that stochastically samples the diagrams of a
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hybridization expansion of the partition function.
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*Homepage:* `<http://ipht.cea.fr/triqs/cthyb_matrix/>`_
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*Homepage:* `<http://ipht.cea.fr/triqs/applications/cthyb_matrix/>`_
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Hubbard I solver
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----------------
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@ -34,4 +34,4 @@ This solver gives the Hubbard I solution of a quantum impurity problem,
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i.e. it solves the atomic limit. This simple approximation allows to have
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very quick answer even for large multiband systems.
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*Homepage:* `<http://ipht.cea.fr/triqs/hubbardI/>`_
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*Homepage:* `<http://ipht.cea.fr/triqs/applications/hubbardI/>`_
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