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authorAaron LI <aly@aaronly.me>2017-06-26 21:41:45 +0800
committerAaron LI <aly@aaronly.me>2017-06-26 21:41:45 +0800
commitf280557ead935e622589eaff46092159b0e3dc4b (patch)
tree94553855fdad72e730d8cd3a1f2b512c6092f468
parent977b3053a57a9fc83ba378b413e8a006b7e3ee99 (diff)
downloadatoolbox-f280557ead935e622589eaff46092159b0e3dc4b.tar.bz2
astro/ps2d.py: Fix argument --pixelsize and fix typo "perp"
-rwxr-xr-xastro/ps2d.py19
1 files changed, 12 insertions, 7 deletions
diff --git a/astro/ps2d.py b/astro/ps2d.py
index 9186701..cceb9fc 100755
--- a/astro/ps2d.py
+++ b/astro/ps2d.py
@@ -59,6 +59,7 @@ class PS2D:
logger.info("Initializing PS2D instance ...")
self.cube = cube
self.pixelsize = pixelsize # [arcmin]
+ logger.info("Image pixel size: %.2 [arcmin]" % pixelsize)
self.frequencies = np.array(frequencies) # [MHz]
self.nfreq = len(self.frequencies)
# Central frequency and redshift
@@ -135,11 +136,11 @@ class PS2D:
mx, my = np.meshgrid(p_x, p_x)
rho, phi = self.cart2pol(mx, my)
rho = np.around(rho).astype(np.int)
- n_k_prep = (nx+1) // 2
+ n_k_perp = (nx+1) // 2
n_k_los = (nz+1) // 2
- ps2d = np.zeros(shape=(n_k_los, n_k_prep)) # (k_los, k_prep)
+ ps2d = np.zeros(shape=(n_k_los, n_k_perp)) # (k_los, k_perp)
logger.info("Calculating 2D PS by binning 3D PS ...")
- for r in range(n_k_prep):
+ for r in range(n_k_perp):
ix, iy = (rho == r).nonzero()
for s in range(n_k_los):
iz = (p_z == s).nonzero()[0]
@@ -154,7 +155,10 @@ class PS2D:
Save the calculated 2D power spectrum as a FITS image.
"""
hdu = fits.PrimaryHDU(data=self.ps2d, header=self.header)
- hdu.writeto(outfile, clobber=clobber)
+ try:
+ hdu.writeto(outfile, overwrite=clobber)
+ except TypeError:
+ hdu.writeto(outfile, clobber=clobber)
logger.info("PS2D results saved to file: %s" % outfile)
@property
@@ -177,7 +181,7 @@ class PS2D:
return kz # [Mpc^-1]
@property
- def k_prep(self):
+ def k_perp(self):
"""
Comoving wavenumbers perpendicular to the LoS
@@ -224,7 +228,7 @@ class PS2D:
hdr["LTM2_2"] = 1.0 / dkz
# WCS physical coordinates
hdr["WCSTY1P"] = "PHYSICAL"
- hdr["CTYPE1P"] = ("k_prep", "wavenumbers perpendicular to LoS")
+ hdr["CTYPE1P"] = ("k_perp", "wavenumbers perpendicular to LoS")
hdr["CRPIX1P"] = (0.5, "reference pixel")
hdr["CRVAL1P"] = (0.0, "coordinate of the reference pixel")
hdr["CDELT1P"] = (dkx, "coordinate delta/step")
@@ -246,7 +250,8 @@ def main():
parser.add_argument("-C", "--clobber", dest="clobber",
action="store_true",
help="overwrite existing file")
- parser.add_argument("-p", "--pixelsize", dest="pixelsize", required=True,
+ parser.add_argument("-p", "--pixelsize", dest="pixelsize",
+ type=float, required=True,
help="image cube pixel size; unit: [arcmin]")
parser.add_argument("-i", "--infile", dest="infile", required=True,
help="input FITS image cube")