Cosmic Background component added
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esbo_etc/classes/optical_component/CosmicBackground.py
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esbo_etc/classes/optical_component/CosmicBackground.py
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from .AOpticalComponent import AOpticalComponent
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from ..IRadiant import IRadiant
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import astropy.units as u
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from astropy.modeling.models import BlackBody
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from ..Entry import Entry
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from typing import Union
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class CosmicBackground(AOpticalComponent):
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"""
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This class models the spectral radiance of the cosmic background as black body radiator
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"""
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@u.quantity_input(temp=[u.Kelvin, u.Celsius])
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def __init__(self, parent: IRadiant, temp: u.Quantity = 2.725 * u.K):
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"""
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Initialize a new black body point source
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Parameters
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----------
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parent : IRadiant
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The parent element of the optical component from which the electromagnetic radiation is received
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temp : Quantity in Kelvin / Celsius
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Temperature of the black body
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Returns
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-------
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"""
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# Create black body model with given temperature
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bb = BlackBody(temperature=temp, scale=1 * u.W / (u.m ** 2 * u.nm * u.sr))
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# Initialize super class
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super().__init__(parent, 1.0, lambda wl: bb(wl))
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@staticmethod
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def check_config(conf: Entry) -> Union[None, str]:
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"""
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Check the configuration for this class
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Parameters
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----------
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conf : Entry
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The configuration entry to be checked.
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Returns
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-------
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mes : Union[None, str]
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The error message of the check. This will be None if the check was successful.
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"""
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mes = conf.check_quantity("temp", u.K)
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if mes is not None:
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return mes
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@ -6,3 +6,4 @@ from .Filter import *
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from .Lens import *
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from .Lens import *
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from .BeamSplitter import *
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from .BeamSplitter import *
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from .Mirror import *
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from .Mirror import *
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from .CosmicBackground import *
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24
tests/optical_component/test_CosmicBackground.py
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tests/optical_component/test_CosmicBackground.py
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from unittest import TestCase
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from esbo_etc import CosmicBackground, BlackBodyTarget, SpectralQty
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import numpy as np
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import astropy.units as u
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class TestBlackBodyTarget(TestCase):
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def setUp(self):
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self.target = BlackBodyTarget(np.arange(100, 105) * u.um)
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self.cosmic = CosmicBackground(self.target)
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def test_calcSignal(self):
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print(self.cosmic.calcSignal()[0])
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self.assertTrue(self.cosmic.calcSignal()[0] == SpectralQty(np.arange(100, 105) * u.um,
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np.array([6.65e-19, 6.391e-19, 6.145e-19, 5.91e-19,
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5.687e-19]) << u.W / (u.m ** 2 * u.nm)))
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def test_calcBackground(self):
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print(self.cosmic.calcBackground())
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self.assertTrue(self.cosmic.calcBackground() == SpectralQty(np.arange(100, 105) * u.um,
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np.array(
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[1.398e-28, 2.244e-28, 3.566e-28, 5.614e-28,
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8.756e-28]) << u.W / (
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u.m ** 2 * u.nm * u.sr)))
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