“Astropy”的版本间差异
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无编辑摘要 |
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>>> hdulist.info() |
>>> hdulist.info() |
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===header=== |
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*each element of an HDUList is an HDU object with .header and .data attributes, which can be used to access the header and data portions of the HDU. |
*each element of an HDUList is an HDU object with .header and .data attributes, which can be used to access the header and data portions of the HDU. |
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>>> hdulist[0].header['targname'] |
>>> hdulist[0].header['targname'] |
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*Another way to either update an existing card or append a new one is to use the Header.set() method: |
*Another way to either update an existing card or append a new one is to use the Header.set() method: |
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>>> prihdr.set('observer', 'Edwin Hubble') |
>>> prihdr.set('observer', 'Edwin Hubble') |
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===fits table 的读与写=== |
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*写 |
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from astropy.table import Table |
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t=Table([Bage,fzbin,Age_weight2],names=('Age','z','weights')) |
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t.write('SFH_LMC3_out.fits',format='fits') |
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*读 |
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hdu = fits.open('SFH_LMC3_out.fits') |
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data=hdu[1].data |
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data.columns #看看有那些列 |
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Bage=data.field('Age') |
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==宇宙学== |
==宇宙学== |
2017年10月9日 (一) 06:35的版本
astropy.io.fits
>>> hdulist = fits.open('input.fits') >>> hdulist.info()
header
- each element of an HDUList is an HDU object with .header and .data attributes, which can be used to access the header and data portions of the HDU.
>>> hdulist[0].header['targname']
- To see the entire header as it appears in the FITS file (with the END card and padding stripped), simply enter the header object by itself, or print(repr(header)):
- It’s also possible to view a slice of the header:
>>> header[:2]
- Another way to either update an existing card or append a new one is to use the Header.set() method:
>>> prihdr.set('observer', 'Edwin Hubble')
fits table 的读与写
- 写
from astropy.table import Table t=Table([Bage,fzbin,Age_weight2],names=('Age','z','weights')) t.write('SFH_LMC3_out.fits',format='fits')
- 读
hdu = fits.open('SFH_LMC3_out.fits') data=hdu[1].data data.columns #看看有那些列 Bage=data.field('Age')
宇宙学
http://docs.astropy.org/en/stable/cosmology/
- 从红移到年龄
>>>from astropy.cosmology import FlatLambdaCDM >>>cosmo = FlatLambdaCDM(H0=70, Om0=0.3)
- 从年龄到红移
>>> import astropy.units as u >>> from astropy.cosmology import z_at_value >>> z_at_value(cosmos.age, 2 * u.Gyr)