ACIS Calibration Information
This page contains current and historical documents regarding
calibration of Chandra's Advanced CCD Imaging Spectrometer (ACIS). Items are
organized by topic (see menu on left) and are ordered by date for each
topic, with most recent items at the top. For topics with on-going
monitoring or calibration (e.g. background, gain correction) the
status is summarized at the top of the section.
Please see also these additional resources:
Background
- Status Blank sky datasets and tools for modeling
the quiescent background, created by Maxim Markevitch, can be found
at Maxim's ACIS background page. [Apr 2009]
- Chandra Calibration Review presentations on ACIS background
- Memos and papers
- Particle
background observations: dark Moon and ACIS stowed,
M. Markevitch, 27 Dec 2005
- Chandra
Spectra of the Soft X-Ray Diffuse Background (PDF),
M. Markevitch, et al., 2003, ApJ 583, 70
- Reducing ACIS
quiescent background using Very Faint mode,
A. Vikhlinin, 22 Oct 2002
- Using Chandra Level 0 Event Histogram Files to Characterize
the High-Energy Particle Background (PDF), B. Biller, P. Plucinsky
& R. Edgar, 22 Jan 2002
- The
Temporal Characteristics of the Chandra X-ray Observatory High
Energy Particle Background (PDF), C.E. Grant, M.W. Bautz &
S.N. Virani, 2002, ASP Conference Proceedings, 262, 401
- General discussion of the
quiescent and flare components of the ACIS background,
M. Markevitch, 28 Sep 2001
- ACIS background measurement prior to opening the
mirror cover (PDF), F. Baganoff, 1 Sep 1999
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Bias
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CC Mode Calibration
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Cross Calibration
- International Astronomical
Consortium for High Energy Calibration (IACHEC) homepage
- Chandra
Calibration Review Presentations on cross-calibration
- Papers:
- Cross-calibration of
the X-ray Instruments onboard the Chandra, INTEGRAL, RXTE, Suzaku,
Swift, and XMM-Newton Observatories using G21.5-0.9, Tsujimoto et
al, 2010 (A&A preprint)
- Cross-calibrating X-ray
detectors with clusters of galaxies: an IACHEC study, Nevalainen
et al, 2010 (A&A preprint)
- The SMC SNR
1E0102.2-7219 as a Calibration Standard for X-ray Astronomy in the
0.3-2.5 keV Bandpass (PDF), Paul P. Plucinsky, Frank Haberl, Daniel
Dewey, Andrew P. Beardmore, Joseph M. DePasquale, Olivier Godet,
Victoria Grinberg, Eric D. Miller, A.M.T. Pollock, Steve Sembay, Randall K. Smith, SPIE, 2008
[Back to top]
Charge Transfer Inefficiency (CTI)
- Status The GRADED mode CTI correction and temperature-dependent CTI correction are included in
acis_process_events as of CIAO 4.3. [Dec 2010]
- ACIS CTI @
-120C: Monitoring and analysis of ACIS CTI by the instrument team,
C. Grant, updated monthly
- Contributed software to apply a
temperature-dependent CTI correction to ACIS data [Oct 2010]
- Penn
State University's ACIS CTI Correction Software and Data Products
- Chandra Calibration Review
presentations on CTI
- Memos and papers
- Approximate correction for
parallel CTI in GRADED mode data (PDF), A. Vikhlinin, CXC
Memo, 19 March 2007
- Temperature dependence of
charge transfer inefficiency in Chandra X-ray CCDs (PDF),
C. Grant, M. Bautz, S. Kissel, B. LaMarr & G. Prigozhin, SPIE, 2006
- Long-term
trends in radiation damage of Chandra x-ray CCDs (PDF), C. Grant,
M. Bautz, S. Kissel, B. LaMarr & G. Prigozhin, SPIE, 2005
- A charge transfer inefficiency
correction model for the Chandra Advanced CCD Imaging
Spectrometer (PDF), C. Grant, M. Bautz, S. Kissel & B. LaMarr,
SPIE, 2004
- Modeling Charge Transfer Inefficiency
in the Chandra Advanced CCD Imaging Spectrometer (PDF),
L. Townsley, P. Broos, J. Nousek & G. Garmire, NIMPA, 2002
- Mitigating Charge
Transfer Inefficiency in the Chandra X-ray Observeratory Advanced
CCD Imaging Spectrometer (PDF), L. Townsley, P. Broos,
G. Garmire & J. Nousek, ApJ, 2000
- CTI-Induced
Quantum Efficiency Loss in ACIS Front Illuminated Devices [5
Apr 2000]
[Back to top]
Detector Geometry
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Energy Resolution
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Event Grades
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Gain
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Hot/Bad Pixels
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Miscellaneous
FEP0 Problem
- Status There has not been a recurrence of the FEP0 anomaly
in ~10 years. [Dec 2010]
- Summary [2 Feb 2000]
Ground Calibration
Transfer Streak Calibration
[Back to top]
Optical Blocking Filter and Contamination
- Status An updated contamination model for the ACIS-I
is included in CALDB 4.4.1. [Dec 2010]
- Chandra
Calibration Review presentations on the contamination
- Memos and papers
- Update to the ACIS
Contamination Model [8 Jan 2010]
- Contamination
on the ACIS OBF and Changes in the Low Energy QE [7 Dec 2004]
- Spatial
structure in the ACIS OBF contamination (PDF), A. Vikhlinin [9
May 2004]
- Verifying the ACIS
Contamination Model with 1E0102.2-7219 (PDF), J. DePasquale,
P. Plucinsky, A. Vikhlinin, H. Marshall, N. Schulz & R. Edgar,
SPIE, 2004
- Composition of the Chandra
ACIS contaminant (PDF), H. Marshall, A. Tennant, C. Grant,
A. Hitchcock, S. O'Dell & P. Plucinsky, SPIE, 2003
- In-Flight
Optical Blocking Filter Transmission [10 March 2000]
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Pileup
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Spatial Resolution, Encircled Energy and PSF
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Quantum Efficiency and QE Uniformity
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Response Matrices
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Subpixel Event Repositioning
- Status From CIAO 4.3 release notes: "As of CIAO 4.3, the default pixel adjustment in
acis_process_events is the sub-pixel event-repositioning algorithm
'EDSER' described in Li et al." (2004, ApJ, 610, 1204)
[Dec 2010]
- Papers
- ACIS Sub-pixel Resolution: Improvement in Point Source Detection (PDF),
Anderson C S, Mossman A E, Kim D-W, Allen G E, Glotfelty K J &
Fabbiano G, 2010, ADASS XX conference series
- Chandra ACIS
Subpixel Event Repositioning: Further Refinements and Comparison
between Backside- and Frontside-illuminated X-Ray CCDs (PDF), Li
J, Kastner J, Prigozhin G, Schulz N, Feigelson E & Getman K, 2004,
ApJ, 610, 1204
-
- Refining
Chandra/ACIS Subpixel Event Repositioning Using a Backside-illuminated
CCD Model (PDF), Li J, Kastner J, Prigozhin G & Schulz N, 2003,
ApJ, 590, 586
- Improvement of the
Spatial Resolution of the ACIS Using Split-Pixel Events (PDF),
Tsunemi H, Mori K, Miyata E, Baluta C, Burrows D, Garmire G & Chartas
G, 2001, ApJ, 554, 496
- Measurement of
the subpixel structure of AXAF CCD's (PDF), Pivovaroff M, Jones S,
Bautz M, Kissel S, Prigozhin G, Ricker G, Tsunemi H & Miyata E, 1998, IEEE Transactions on Nuclear Science, vol.45, No.2, pp. 164-175
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Comments to cxccal (at) cfa.harvard.edu