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Published byJosephine King Modified over 8 years ago
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Calibration of PPTA Data R. N. Manchester Australia Telescope National Facility, CSIRO Sydney Australia Summary Effect of calibration on timing Non-linearities in system response Time stability of calibration parameters
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PSR J1744-1134 Timing Residuals 20cm Multibeam Receiver PDFB1, June 05 - Nov 07 Mostly 1-h observations Uncalibrated Rms Residual: 1.23 s Calibrated instrumental gain and phase Rms Residual: 0.74 s Jump around H-OH data Rms Residual: 0.65 s PCM calibration - no jump Rms Residual: 0.72 s PCM Cal with jump Rms Residual: 0.59 s
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Raw Calibration Amplitudes PDFB1, June 05 - Nov 07 Cal amplitudes in counts (obtained using pdv -c) Initially operating with input levels too high Levels further reduced after linearity tests Apart from non-linear effects, absolute levels don’t matter provided cal and psr observations done with same settings
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Effect of Non-Linearities PDFB1, MB Receiver Saturation effects Vela Pulsar, 20cm band WBC, H-OH Receiver 2-bit digitisation effects, feed resonances, correlator artifacts Plotted profiles truncated at 5% of peak
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System Linearity PDFB2, MB receiver Pulsed calibration used as test signal Adjust input signal levels using down-converter attenuators Measure digitiser rms, cal amplitudes and apparent fractional linear polarisation of calibration System reasonably linear over input rms range of 6 - 60, i.e. 20 db range of input power Operating point of rms = 10 chosen Similar level tests done for PDFB1
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Linearity with Current Settings for Input Levels Vela Pulsar, MB Receiver PDFB1 PDFB2 5% truncation of profiles
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Pulsed Cal Mean Flux Densities Centre beam Multibeam receiver, 1369 MHz Mean values from pacv
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PDFB2: 11 Sept 2007 PDFB1: 16 June 2007 PDFB2: 01 Oct 2007 WBC: 22 Dec 2005 Calibration Flux Density Spectra Multibeam Receiver - based on observations of Hydra A
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09 May 2006 16 June 200704 Aug 2007 Feed Cross-Coupling Parameters PDFB1, Multibeam Receiver 1369 MHz Polarisation ellipse orientation and ellipticity
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