CSiBORG analysis tools.
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Richard Stiskalek 5dd8c668fa
Gaussian smoothing of density fields (#33)
* Simplify smoothing support and looping over nonzero

* Simplify comments

* add now()

* add cat length

* add smoothed calculation

* add smoothing

* Add sorting

* Edit what is ignored

* Move notebooks

* Add nonsymmetric smoothed overlap

* Update NB

* Add support for reading in the smoothed overlap

* Switch to the true overlap definition

* Reader of the true overlap

* rem occups

* Import moved to a class

* Move definition

* Edit submission script

* Update to account for the new definition

* backup nb

* Switch back to properly initialising arrays

* Fix addition bug

* Update NB

* Fix little bug

* Update nb
2023-03-27 09:22:03 +01:00
csiborgtools Gaussian smoothing of density fields (#33) 2023-03-27 09:22:03 +01:00
data SDSS galaxies and catalogs rework (#15) 2022-12-05 11:36:41 +00:00
meetings Gaussian smoothing of density fields (#33) 2023-03-27 09:22:03 +01:00
notebooks Gaussian smoothing of density fields (#33) 2023-03-27 09:22:03 +01:00
scripts Gaussian smoothing of density fields (#33) 2023-03-27 09:22:03 +01:00
.gitattributes add .gitattrib 2022-10-11 16:43:18 +01:00
.gitignore Gaussian smoothing of density fields (#33) 2023-03-27 09:22:03 +01:00
pymake.sh Particle match & file system & phase space (#11) 2022-11-25 10:44:08 +00:00
pyremove.sh Particle match & file system & phase space (#11) 2022-11-25 10:44:08 +00:00
README.md Overlap reader thresholds (#31) 2023-03-15 20:55:50 +00:00
setup.py Particle match & file system & phase space (#11) 2022-11-25 10:44:08 +00:00

CSiBORGTools

Questions

  • How well can observed clusters be matched to CSiBORG? Do their masses agree?
  • Is the number of clusters in CSiBORG consistent?

CSiBORG Galaxy Environmental Dependence

TODO

  • Add gradient and Hessian of the overdensity field.

Questions

  • Environmental dependence of:

    • M_*, colour and SFR.
    • Galaxy alignment.
    • HI content.
  • Fields to calculate:

    1. Overdensity field \delta
    2. Gradient and Hessian of \delta
    3. Gravitational field \Phi
    4. Gradient and Hessian of \Phi