A class to hold and work with spectral quantities
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esbo_etc/classes/SpectralQty.py
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75
esbo_etc/classes/SpectralQty.py
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from esbo_etc.lib.helpers import error
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import numpy as np
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from scipy.integrate import cumtrapz
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import astropy.units as u
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class SpectralQty:
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"""
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A class to hold and work with spectral quantities
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"""
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def __init__(self, wl: u.Quantity, qty: u.Quantity):
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"""
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Initialize a new spectral quantity
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Parameters
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----------
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wl : Quantity
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The binned wavelengths
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qty : Quantity
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The quantity values corresponding to the binned wavelengths
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"""
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self.wl = wl
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self.qty = qty
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def add(self, sqty: "SpectralQty"):
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pass
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def multiply(self, sqty: "SpectralQty"):
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pass
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def rebin(self, wl: u.Quantity):
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"""
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Resample the spectral quantity sqty(wl) over the new grid wl, rebinning if necessary, otherwise interpolates.
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Copied from ExoSim (https://github.com/ExoSim/ExoSimPublic).
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Parameters
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----------
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wl : Quantity
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new binned wavelengths
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Returns
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-------
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"""
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if wl.unit != self.wl.unit:
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error("Mismatching units for rebinning: " + wl.unit + ", " + self.wl.unit)
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idx = np.where(np.logical_and(self.wl > 0.9 * wl.min(), self.wl < 1.1 * wl.max()))[0]
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wl_old = self.wl[idx]
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qty_old = self.qty[idx]
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if np.diff(wl_old).min() < np.diff(wl).min():
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# Binning
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c = cumtrapz(qty_old, x=wl_old) * qty_old.unit * wl_old.unit
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xpc = wl_old[1:]
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delta = np.gradient(wl)
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new_c_1 = np.interp(wl - 0.5 * delta, xpc, c, left=0.0, right=0.0) * c.unit
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new_c_2 = np.interp(wl + 0.5 * delta, xpc, c, left=0.0, right=0.0) * c.unit
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qty = (new_c_2 - new_c_1) / delta
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else:
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# Interpolation
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qty = np.interp(wl, wl_old, qty_old, left=0.0, right=0.0) * qty_old.unit
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self.wl = wl
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self.qty = qty
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# import matplotlib.pyplot as plt
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# plt.plot(wl_old, qty_old, '-')
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# plt.plot(wl, qty, '.-')
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# plt.show()
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# # check
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# print(np.trapz(qty, wl))
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# idx = np.where(np.logical_and(wl_old >= wl.min(), wl_old <= wl.max()))
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# print(np.trapz(qty_old[idx], wl_old[idx]))
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