Bugfix: divide by forward efficiency
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@ -302,7 +302,7 @@ class Heterodyne(ASensor):
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equivalencies=u.spectral_density(
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background.wl)))
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t_background = background * (
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self.__main_beam_efficiency * background.wl ** 2 / (2 * k_B) * self.__eta_fss * u.sr)
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self.__main_beam_efficiency * background.wl ** 2 / (2 * k_B) / self.__eta_fss * u.sr)
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t_background = SpectralQty(t_background.wl, t_background.qty.decompose())
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# Calculate the incoming photon current of the target
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logger.info("Calculating the signal temperature.")
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@ -311,13 +311,13 @@ class Heterodyne(ASensor):
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signal = SpectralQty(signal.wl, signal.qty.to(u.W / (u.m ** 2 * u.Hz),
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equivalencies=u.spectral_density(signal.wl)))
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t_signal = signal * (self.__aperture_efficiency * self.__common_conf.d_aperture() ** 2 *
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np.pi / 4 / (2 * k_B) * self.__eta_fss)
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np.pi / 4 / (2 * k_B) / self.__eta_fss)
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t_signal = SpectralQty(t_signal.wl, t_signal.qty.decompose())
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else:
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signal = SpectralQty(signal.wl, signal.qty.to(u.W / (u.m ** 2 * u.Hz * u.sr),
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equivalencies=u.spectral_density(signal.wl)))
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t_signal = signal * (self.__main_beam_efficiency * signal.wl ** 2 / (
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2 * k_B) * self.__eta_fss * u.sr)
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t_signal = signal * (
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self.__main_beam_efficiency * signal.wl ** 2 / (2 * k_B) / self.__eta_fss * u.sr)
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t_signal = SpectralQty(t_signal.wl, t_signal.qty.decompose())
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if self.__lambda_local_oscillator is None:
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