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Caleb Fangmeier c30afd642a Merge branch 'master' of github.com:cfangmeier/TTTT il y a 7 ans
analysis c093c9931b Fixes lower limits on histograms doing zero supression. Regenerates il y a 7 ans
cmake 5d5ec3f925 Misc. Updates including il y a 7 ans
docs c093c9931b Fixes lower limits on histograms doing zero supression. Regenerates il y a 7 ans
filval c093c9931b Fixes lower limits on histograms doing zero supression. Regenerates il y a 7 ans
filval_root 5d5ec3f925 Misc. Updates including il y a 7 ans
legacy 38070229c3 Adds histogram containers to be filled with arrays, rather than singular il y a 7 ans
python 2c243601f7 Adds code to create value-graph dependency visualizations il y a 7 ans
.gitignore d1395f5084 adds ignored png files to docs il y a 7 ans
CMakeLists.txt e544cd23df Adds the ability to store arbitrary stl containers in output file. Adds visualization of Generator-Level objects using graphviz il y a 7 ans
Doxyfile.in f9557909ad Adds single-value analogues to Zip/Map in Tuple/Apply il y a 7 ans
LICENSE b37d28e726 Initial commit il y a 7 ans
MiniTreeDoc.txt 5d5ec3f925 Misc. Updates including il y a 7 ans
README.md e544cd23df Adds the ability to store arbitrary stl containers in output file. Adds visualization of Generator-Level objects using graphviz il y a 7 ans

README.md

TTTT Production Cross-Section Measurement

This project contains the code, documentation, and results of the TTTT production cross-section measurment in the tri-lepton channel.

To run this analysis, first aquire relevant MC files for signal(TTTT), and main backgrounds(TTW, TTZ, TT). These should be in the "Minitree" format. Then checkout the code from Github. After acquiring the code, follow the standard cmake build process of

cd project_directory
mkdir build
cd build
cmake ..
make

Once the code has been built, there should be a main executable in the build directory. Call it with the syntax

./main -f path_to_minitree_file

This will create a results ROOT file containing a set of histograms extracted from the Minitree. Create one of these for each input Minitree. The results are then usually processed in Jupyter Notebooks to produce final plots/measurements. For example, a basic listing of generated histograms can be found here

References

  • Four Tops for LHC (arXiv)
    A theory paper outlining a general strategy for measuring tttt cross-section using the SS-dilepton and trilepton channels
  • Efficient Identification of Boosted Semileptonic Top Quarks at the LHC (arXiv)
    Detailed description of the "mini-iso" requirement.
  • Top-tagging: A Method for Identifying Boosted Hadronic Tops (arXiv)
    Description of how to identify hadronically decaying Tops. ie. t->b + W(->q + \bar{q})