summaryrefslogtreecommitdiff
path: root/biblio
diff options
context:
space:
mode:
authorvrouvrea <vrouvrea@636b058d-ea47-450e-bf9e-a15bfbe3eedb>2017-04-19 09:13:35 +0000
committervrouvrea <vrouvrea@636b058d-ea47-450e-bf9e-a15bfbe3eedb>2017-04-19 09:13:35 +0000
commitd6dacf64191ad06b1493f4b4cde15e4e553561fc (patch)
tree47312b57bb60e69530401c0dc74e2ae4f501496f /biblio
parentc74eff3efe5e18af2c8d61dbedacfd1e1fb97b35 (diff)
parent2ce2ed92a4400ecaaa6aac813e206d08b0b1f029 (diff)
Merge add_test_windows branch to fix add_test
Fix a biblio doxygen warning git-svn-id: svn+ssh://scm.gforge.inria.fr/svnroot/gudhi/trunk@2365 636b058d-ea47-450e-bf9e-a15bfbe3eedb Former-commit-id: 72a9180aa6be56fca0b5f357247300df17770159
Diffstat (limited to 'biblio')
-rw-r--r--biblio/bibliography.bib2
1 files changed, 1 insertions, 1 deletions
diff --git a/biblio/bibliography.bib b/biblio/bibliography.bib
index 9d53a628..29fc5650 100644
--- a/biblio/bibliography.bib
+++ b/biblio/bibliography.bib
@@ -111,7 +111,7 @@ language={English},
@techreport{boissonnat:hal-00922572,
hal_id = {hal-00922572},
url = {http://hal.inria.fr/hal-00922572},
- title = {\href{http://hal.inria.fr/hal-00922572}{Computing Persistent Homology with Various Coefficient Fields in a Single Pass}},
+ title = {Computing Persistent Homology with Various Coefficient Fields in a Single Pass},
author = {Boissonnat, Jean-Daniel and Maria, Cl{\'e}ment},
abstract = {{In this article, we introduce the multi-field persistence diagram for the persistence homology of a filtered complex. It encodes compactly the superimposition of the persistence diagrams of the complex with several field coefficients, and provides a substantially more precise description of the topology of the filtered complex. Specifically, the multi-field persistence diagram encodes the Betti numbers of integral homology and the prime divisors of the torsion coefficients of the underlying shape. Moreover, it enjoys similar stability properties as the ones of standard persistence diagrams, with the appropriate notion of distance. These properties make the multi-field persistence diagram a useful tool in computational topology.}},
keywords = {Computational Topology, Persistent homology, Modular reconstruction},