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adding cic compensation tools
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2 changed files with 32 additions and 0 deletions
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@ -83,3 +83,18 @@ def longrange_kernel(kvec, r_split):
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return np.exp(-kk * r_split**2)
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else:
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return 1.
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def cic_compensation(kvec):
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"""
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Computes cic compensation kernel.
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Adapted from https://github.com/bccp/nbodykit/blob/a387cf429d8cb4a07bb19e3b4325ffdf279a131e/nbodykit/source/mesh/catalog.py#L499
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Itself based on equation 18 (with p=2) of
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`Jing et al 2005 <https://arxiv.org/abs/astro-ph/0409240>`_
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Args:
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kvec: array of k values in Fourier space
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Returns:
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v: array of kernel
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"""
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kwts = [np.sinc(kvec[i] / (2 * np.pi)) for i in range(3)]
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wts = (kwts[0] * kwts[1] * kwts[2])**(-2)
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return wts
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@ -2,6 +2,8 @@ import jax
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import jax.numpy as jnp
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import jax.lax as lax
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from jaxpm.kernels import fftk, cic_compensation
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def cic_paint(mesh, positions):
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""" Paints positions onto mesh
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mesh: [nx, ny, nz]
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@ -49,3 +51,18 @@ def cic_read(mesh, positions):
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return (mesh[neighboor_coords[...,0],
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neighboor_coords[...,1],
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neighboor_coords[...,3]]*kernel).sum(axis=-1)
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def compensate_cic(field):
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"""
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Compensate for CiC painting
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Args:
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field: input 3D cic-painted field
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Returns:
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compensated_field
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"""
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nc = field.shape
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kvec = fftk(nc)
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delta_k = jnp.fft.rfftn(field)
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delta_k = cic_compensation(kvec) * delta_k
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return jnp.fft.irfftn(delta_k)
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