polcal – Determine instrumental polarization calibrations – calibration task

Description

The complex instrumental polarization factors (D-terms) for each antenna/spwid are determined from the data for the specified calibrator sources. Previous calibrations can be applied on the fly.

Parameters

Title

Parameter

Default

Description

vis

''

Name of input visibility file

caltable

''

Name of output gain calibration table

field

''

Select field using field id(s) or field name(s)

spw

''

Select spectral window/channels

intent

''

Select observing intent

selectdata

True

Other data selection parameters

timerange

''

Select data based on time range

uvrange

''

Select data within uvrange (default units meters)

antenna

''

Select data based on antenna/baseline

scan

''

Scan number range

observation

''

Select by observation ID(s)

msselect

''

Optional complex data selection (ignore for now)

solint

'inf'

Solution interval

combine

'obs,scan'

Data axes which to combine for solve (obs, scan, spw, and/or field)

preavg

float(300.0)

Pre-averaging interval (sec)

refant

''

Reference antenna name(s)

minblperant

int(4)

Minimum baselines _per antenna required for solve

minsnr

float(3.0)

Reject solutions below this SNR

poltype

'D+QU'

Type of instrumental polarization solution (see help)

smodel

numpy.array( [  ] )

Point source Stokes parameters for source model.

append

False

Append solutions to the (existing) table

docallib

False

Use callib or traditional cal apply parameters

callib

''

Cal Library filename

gaintable

numpy.array( [  ] )

Gain calibration table(s) to apply

gainfield

numpy.array( [  ] )

Select a subset of calibrators from gaintable(s)

interp

numpy.array( [  ] )

Interpolation mode (in time) to use for each gaintable

spwmap

[ ]

Spectral window mappings to form for gaintable(s)

Parameter Explanations

vis

''

Name of input visibility file

caltable

''

Name of output gain calibration table

field

''

Select field using field id(s) or field name(s)

spw

''

Select spectral window/channels

intent

''

Select observing intent

selectdata

True

Other data selection parameters

timerange

''

Select data based on time range

uvrange

''

Select data within uvrange (default units meters)

antenna

''

Select data based on antenna/baseline

scan

''

Scan number range

observation

''

Select by observation ID(s)

msselect

''

Optional complex data selection (ignore for now)

solint

'inf'

Solution interval

combine

'obs,scan'

Data axes which to combine for solve (obs, scan, spw, and/or field)

preavg

float(300.0)

Pre-averaging interval (sec)

refant

''

Reference antenna name(s)

minblperant

int(4)

Minimum baselines _per antenna required for solve

minsnr

float(3.0)

Reject solutions below this SNR

poltype

'D+QU'

Type of instrumental polarization solution (see help)

smodel

numpy.array( [  ] )

Point source Stokes parameters for source model.

append

False

Append solutions to the (existing) table

docallib

False

Use callib or traditional cal apply parameters

callib

''

Cal Library filename

gaintable

numpy.array( [  ] )

Gain calibration table(s) to apply

gainfield

numpy.array( [  ] )

Select a subset of calibrators from gaintable(s)

interp

numpy.array( [  ] )

Interpolation mode (in time) to use for each gaintable

spwmap

[ ]

Spectral window mappings to form for gaintable(s)

Only used if callib=False default: [] (apply solutions from each calibration spw to the same MS spw only) Any available calibration spw can be mechanically mapped to any

MS spw.

Examples:
spwmap=[0,0,1,1] means apply calibration

from cal spw = 0 to MS spw 0,1 and cal spw 1 to MS spws 2,3.

spwmap=[[0,0,1,1],[0,1,0,1]] (use a list of lists for multiple

gaintables)