part 1: a brief comparison of time- latitude first stokes bias structure in v505 and v620 part 1: a...

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PART 1: A Brief Comparison of Time-Latitude First Stokes Bias Structure in v505 and v620 Joe Tenerelli SMOS Calibration Meeting 18 26/05/2014

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Page 1: PART 1: A Brief Comparison of Time- Latitude First Stokes Bias Structure in v505 and v620 PART 1: A Brief Comparison of Time- Latitude First Stokes Bias

PART 1: A Brief Comparison of Time-Latitude First Stokes Bias Structure in

v505 and v620

Joe TenerelliSMOS Calibration Meeting 18

26/05/2014

Page 2: PART 1: A Brief Comparison of Time- Latitude First Stokes Bias Structure in v505 and v620 PART 1: A Brief Comparison of Time- Latitude First Stokes Bias

PURPOSE:

Compare v504 and v620 alias-free average bias structure as a function of time and latitude, focusing on May 2011 (not eclipse period with relatively small orbital drift in v504) and Nov 2012-Jan 2013 (eclipse period).

Page 3: PART 1: A Brief Comparison of Time- Latitude First Stokes Bias Structure in v505 and v620 PART 1: A Brief Comparison of Time- Latitude First Stokes Bias

Recall Descending Pass TP-7 in Eclipse PeriodVariations in Tp7 strongest during this time of year:

Page 4: PART 1: A Brief Comparison of Time- Latitude First Stokes Bias Structure in v505 and v620 PART 1: A Brief Comparison of Time- Latitude First Stokes Bias

Corresponding v505 AF-FOV Bias in (Tx+Ty)/2Variations in first Stokes parameter also strongest during this time of year in version 504 of reconstructed Tbs:

Page 5: PART 1: A Brief Comparison of Time- Latitude First Stokes Bias Structure in v505 and v620 PART 1: A Brief Comparison of Time- Latitude First Stokes Bias

Corresponding v620 AF-FOV Bias in (Tx+Ty)/2Drift noticeably reduced in v620:

Page 6: PART 1: A Brief Comparison of Time- Latitude First Stokes Bias Structure in v505 and v620 PART 1: A Brief Comparison of Time- Latitude First Stokes Bias

Change from v505 to v620 BiasDrift difference between v620 and v504:

Page 7: PART 1: A Brief Comparison of Time- Latitude First Stokes Bias Structure in v505 and v620 PART 1: A Brief Comparison of Time- Latitude First Stokes Bias

Recall Descending Pass TP-7 in Eclipse PeriodBias change pattern seems to correspond well to the Tp-7 pattern in descending passes.So is the change in the bias linked to the removal of the one-slope model?

Page 8: PART 1: A Brief Comparison of Time- Latitude First Stokes Bias Structure in v505 and v620 PART 1: A Brief Comparison of Time- Latitude First Stokes Bias

Descending Pass Bias vs TP-7Correlation between Tp7 and bias in first Stokes is reduced in V620 rtelative to that in v504:

Page 9: PART 1: A Brief Comparison of Time- Latitude First Stokes Bias Structure in v505 and v620 PART 1: A Brief Comparison of Time- Latitude First Stokes Bias

We next look at ascending pass bias

Page 10: PART 1: A Brief Comparison of Time- Latitude First Stokes Bias Structure in v505 and v620 PART 1: A Brief Comparison of Time- Latitude First Stokes Bias

v505 AF-FOV Bias in (Tx+Ty)/2Ascending passes

Page 11: PART 1: A Brief Comparison of Time- Latitude First Stokes Bias Structure in v505 and v620 PART 1: A Brief Comparison of Time- Latitude First Stokes Bias

Corresponding v620 AF-FOV Bias in (Tx+Ty)/2Ascending passes

Page 12: PART 1: A Brief Comparison of Time- Latitude First Stokes Bias Structure in v505 and v620 PART 1: A Brief Comparison of Time- Latitude First Stokes Bias

Change from v505 to v620 BiasAscending passes

Page 13: PART 1: A Brief Comparison of Time- Latitude First Stokes Bias Structure in v505 and v620 PART 1: A Brief Comparison of Time- Latitude First Stokes Bias

CONCLUSION FOR ASCENDING PASSES:

Latitudinal variation also seems reduced for ascending passes in the eclipse period.

Page 14: PART 1: A Brief Comparison of Time- Latitude First Stokes Bias Structure in v505 and v620 PART 1: A Brief Comparison of Time- Latitude First Stokes Bias

We next look at descending-ascending pass bias

Page 15: PART 1: A Brief Comparison of Time- Latitude First Stokes Bias Structure in v505 and v620 PART 1: A Brief Comparison of Time- Latitude First Stokes Bias

v505 AF-FOV Bias in (Tx+Ty)/2Descending-Ascending passes

Page 16: PART 1: A Brief Comparison of Time- Latitude First Stokes Bias Structure in v505 and v620 PART 1: A Brief Comparison of Time- Latitude First Stokes Bias

Corresponding v620 AF-FOV Bias in (Tx+Ty)/2Descending-Ascending passes

Page 17: PART 1: A Brief Comparison of Time- Latitude First Stokes Bias Structure in v505 and v620 PART 1: A Brief Comparison of Time- Latitude First Stokes Bias

Change from v505 to v620 BiasDescending-Ascending passes

Page 18: PART 1: A Brief Comparison of Time- Latitude First Stokes Bias Structure in v505 and v620 PART 1: A Brief Comparison of Time- Latitude First Stokes Bias

We next look at May 2011 where the change is mostly an overall shift in the level of the brightness temperature with little latitude-

time structure.

Page 19: PART 1: A Brief Comparison of Time- Latitude First Stokes Bias Structure in v505 and v620 PART 1: A Brief Comparison of Time- Latitude First Stokes Bias

Corresponding v505 AF-FOV Bias in (Tx+Ty)/2May 2011 descending passes

Page 20: PART 1: A Brief Comparison of Time- Latitude First Stokes Bias Structure in v505 and v620 PART 1: A Brief Comparison of Time- Latitude First Stokes Bias

Corresponding v620 AF-FOV Bias in (Tx+Ty)/2May 2011 descending passes

Page 21: PART 1: A Brief Comparison of Time- Latitude First Stokes Bias Structure in v505 and v620 PART 1: A Brief Comparison of Time- Latitude First Stokes Bias

Change from v505 to v620 BiasMay 2011 descending passes

Page 22: PART 1: A Brief Comparison of Time- Latitude First Stokes Bias Structure in v505 and v620 PART 1: A Brief Comparison of Time- Latitude First Stokes Bias

We next look at ascending pass bias for May 2011

Page 23: PART 1: A Brief Comparison of Time- Latitude First Stokes Bias Structure in v505 and v620 PART 1: A Brief Comparison of Time- Latitude First Stokes Bias

Corresponding v505 AF-FOV Bias in (Tx+Ty)/2May 2011 ascending passes

Page 24: PART 1: A Brief Comparison of Time- Latitude First Stokes Bias Structure in v505 and v620 PART 1: A Brief Comparison of Time- Latitude First Stokes Bias

Corresponding v620 AF-FOV Bias in (Tx+Ty)/2May 2011 ascending passes

Page 25: PART 1: A Brief Comparison of Time- Latitude First Stokes Bias Structure in v505 and v620 PART 1: A Brief Comparison of Time- Latitude First Stokes Bias

Change from v505 to v620 BiasMay 2011 ascending passes

Page 26: PART 1: A Brief Comparison of Time- Latitude First Stokes Bias Structure in v505 and v620 PART 1: A Brief Comparison of Time- Latitude First Stokes Bias

CONCLUSION FOR MAY 2011 ASC/DESC PASSES:

Noticeable decrease in long-term drift in v620 relative to v504 for ascending passes.

Little short term drift in either version in this period.

Page 27: PART 1: A Brief Comparison of Time- Latitude First Stokes Bias Structure in v505 and v620 PART 1: A Brief Comparison of Time- Latitude First Stokes Bias

Fourth Stokes Bias

Page 28: PART 1: A Brief Comparison of Time- Latitude First Stokes Bias Structure in v505 and v620 PART 1: A Brief Comparison of Time- Latitude First Stokes Bias

Fourth Stokes v505 Bias

Page 29: PART 1: A Brief Comparison of Time- Latitude First Stokes Bias Structure in v505 and v620 PART 1: A Brief Comparison of Time- Latitude First Stokes Bias

Fourth Stokes v620 Bias

Page 30: PART 1: A Brief Comparison of Time- Latitude First Stokes Bias Structure in v505 and v620 PART 1: A Brief Comparison of Time- Latitude First Stokes Bias

Fourth Stokes v620-v505 Bias

Page 31: PART 1: A Brief Comparison of Time- Latitude First Stokes Bias Structure in v505 and v620 PART 1: A Brief Comparison of Time- Latitude First Stokes Bias

CONCLUSION FOR FOURTH STOKES:

Reduced short term drift. Less obvious correlation with Faraday rotation (should be none).