Files
Calabi-Yau-Period-Geometry/README.md
T
julianandJulian Piribauer 59dbb8f8bf
CI / lint (push) Canceled after 0s
CI / test (push) Canceled after 0s
Updating README (#11)
---------

Co-authored-by: Julian Piribauer <julian.piribauer@gmail.com>
Reviewed-on: #11
2026-07-29 20:30:12 +02:00

74 lines
2.1 KiB
Markdown

# Calabi-Yau-Period-Geometry
This project collects code used for analysing Calabi&ndash;Yau families.
It allows for computation of discriminant loci and topological data of manifolds defined as hypersurfaces or complete intersections in toric ambient spaces.
## toric_topdata
Supported initialisations are represented by the following examples.
```python
elliptic_curve_D = ToricPolytopeProjectiveSpace([1, 2, 3], model_name="elliptic_curve_D")
CY3_quintic = ToricPolytopeProjectiveSpace([1, 1, 1, 1, 1], model_name="quintic")
CY3_bicubic = ToricPolytopeCICY([[3, 3]], model_name="bi-cubic")
CICY3_two_parameter_manual_nef = ToricPolytope([[1,0,0,0,0,0],[0,1,0,0,0,0],[0,0,1,0,0,0],
[0,0,0,1,0,0],[0,0,0,0,1,0],[0,0,0,0,0,1],
[-1,-1,0,0,0,0],[0,0,-1,-1,-1,-1]],
nef_partition=[[0,1,2,3], [4,5,6,7]])
CICY5_two_parameter = ToricPolytopeCICY([[6, 1],[0, 2]])
```
The discriminant factors and topological data, e.g. for the quintic, can then be computed with the methods below.
```python
CY3_quintic.disc()
CY3_quintic.topdata()
```
We list the output of above two lines.
```term
INFO:__main__:Discriminant factors: [[z1 + 1/3125, 0]]
INFO:__main__:
--- Polytope and GLSM table ------------------
1|1|1|1|1|| 1
-1|1|0|0|0|| 0
-1|0|1|0|0|| 0
-1|0|0|1|0|| 0
-1|0|0|0|1|| 0
--------------
1,1,1,1,1; -5
--- L-vectors (GLSM charges) -----------------
[[1, 1, 1, 1, 1, -5]]
--- Intersection numbers CY ------------------
{(0, 0, 0): 5}
--- Intersection ring ------------------------
5*t0^3
--- Intersection ring no multiplicities ------
5*t0^3
--- Chern polynomials ------------------------
[[0], [10*t0^3], [-40*t0^3]]
--- Integrated Chern classes -----------------
[[0], [50], [-200]]
DEBUG:__main__:
--- Kähler cone generators (ambient space) ---
['[z4]']
--- Intersection numbers ambient space -------
{(0, 0, 0, 0): 1}
```
The result is saved in the folder `data/topdata` as a JSON file &mdash; giving a model name helps keeping
track of these outputs.
Note that for Calabi&ndash;Yau dimensions larger than four, the additional