measurement_sensorVectorGaussian
- Workspace.measurement_sensorVectorGaussian(self, measurement_sensor: ArrayOfSensorObsel = self.measurement_sensor, measurement_sensor_meta: ArrayOfSensorMetaInfo = self.measurement_sensor_meta, freq_grid: AscendingGrid = self.freq_grid, std: Vector, pos: Vector3, pol: Stokvec = [1, 0, 0, 0], los: Vector2) None
Creates a single simple Gaussian-opening sensor.
This means that the sensor has a Gaussian bandwidth per channel. That is, multiple frequency points are used to simulate the spectral radiance before being averaged into a channel. The bandwidth of each channel is independent.
Wrapper calling Methods (in order):
Equivalent (mostly) Python code:
1ws = pyarts.Workspace() 2 3# ... 4 5 ws.measurement_sensorInit() 6 ws.measurement_sensorAddVectorGaussian()
Author: Richard Larsson
- Parameters:
measurement_sensor (~pyarts3.arts.ArrayOfSensorObsel, optional) – A list of sensor elements that fully describe one or more observing sensor(s). Defaults to
self.measurement_sensor. [OUT]measurement_sensor_meta (~pyarts3.arts.ArrayOfSensorMetaInfo, optional) – Metadata describing each sensor’s block in
measurement_vec. Defaults toself.measurement_sensor_meta. [OUT]freq_grid (~pyarts3.arts.AscendingGrid, optional) – A frequency grid. Unit: Hz. Defaults to
self.freq_grid. [IN]std (Vector) – The standard deviations of the channels. [IN]
pos (Vector3) – A position [alt, lat, lon]. [IN]
pol (~pyarts3.arts.Stokvec, optional) – The polarization whose dot-product with the spectral radiance becomes the measurement. Defaults to
1 0 0 0[IN]los (Vector2) – A line of sight [zenith, azimuth]. [IN]