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AutoStar
CCD Photometry
A Step-By-Step Guide
by
Jeffrey L. Hopkins
Hopkins Phoenix Observatory
Phoenix, Arizona
and
Gene A. Lucas
NiteOwl Astrophysical Observatory
Fountain Hills, Arizona
Modified DSI™ Pro CCD Camera with BVRI Photometric filters
On Meade 12-inch LX200 GPS Telescope
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Strany 1 - CCD Photometry

AutoStarCCD PhotometryA Step-By-Step GuidebyJeffrey L. HopkinsHopkins Phoenix ObservatoryPhoenix, ArizonaandGene A. LucasNiteOwl Astrophysical Observa

Strany 2

viii AUTOSTAR CCD PHOTOMETRY LIST OF TABLESPage3-1. ImageInfo Log Text File Example. 26B-1. Pa

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90 AUTOSTAR CCD PHOTOMETRY Header DetailsFrom the Autostar Image Processing menu, at the lowe

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AUTOSTAR CCD PHOTOMETRY 91APPENDIX HLightbox Design and ConstructionThis section briefly dis

Strany 5 - TABLE OF CONTENTS

92 AUTOSTAR CCD PHOTOMETRY (2) "Tee Shirt" Flats – A variant technique employing a

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AUTOSTAR CCD PHOTOMETRY 93The joints may be attached together using a hot glue gun, or tape(

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94 AUTOSTAR CCD PHOTOMETRY Light Sources – Small incandescent battery–operated lamps orLEDs a

Strany 8 - LIST OF FIGURES

AUTOSTAR CCD PHOTOMETRY 95Plans and Further DetailsDetails of light box construction are sho

Strany 9 - LIST OF FIGURES (Contd.)

96 AUTOSTAR CCD PHOTOMETRY Joins in the cardboard material have not given any problem in thef

Strany 10 - LIST OF TABLES

AUTOSTAR CCD PHOTOMETRY 97Attached on the inside corners of the bulkhead are four smallincan

Strany 11 - 1. Introduction

98 AUTOSTAR CCD PHOTOMETRY Figure H-4. Typical Light Box Flat Field (V Filter),Showing Artifa

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AUTOSTAR CCD PHOTOMETRY 99APPENDIX ISuggested ProjectsIntroductionThere are many types of as

Strany 13 - 2. Data Acquisition

AUTOSTAR CCD PHOTOMETRY 11. IntroductionAstronomical photometry performed with Charge Coup

Strany 14

100 AUTOSTAR CCD PHOTOMETRY Lists of the brighter lunar occultations occurring during the yeara

Strany 15 - 2.3 Setting Directories

AUTOSTAR CCD PHOTOMETRY 101Comet PhotometryWith each appearance of a new comet, interest in co

Strany 16 - 2.4 Taking Dark Frames

102 AUTOSTAR CCD PHOTOMETRY Eruptive VariablesThe eruptive variables tend to produce sudden, un

Strany 17

AUTOSTAR CCD PHOTOMETRY 103APPENDIX JReferencesReferenceMiles, R., “UBVRI photometry using CCD

Strany 18 - 2.5.1 Imaging Procedure

104 AUTOSTAR CCD PHOTOMETRY Web ResourcesAAVSO Julian Day Calculator - On-line JD conversion.ht

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AUTOSTAR CCD PHOTOMETRY 105HPO - Hopkins Phoenix Observatory -Epsilon Aurigae 2009 Campaignhtt

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106 AUTOSTAR CCD PHOTOMETRY RASC - Royal Astronomical Society of Canada -http://www.rasc.caPubl

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AUTOSTAR CCD PHOTOMETRY 107INDEXPage(s)Aa, Y-Intercept Value 85α (alpha) – see Right Ascension

Strany 22 - Tracking Star Selection Box

108 AUTOSTAR CCD PHOTOMETRY INDEX (Contd.)Page(s)Centroid 22, 23Charge Coupled Device – see CCD

Strany 23

AUTOSTAR CCD PHOTOMETRY 109INDEX (Contd.)Page(s)Eε (epsilon) – see Transformation Coefficient

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2 AUTOSTAR CCD PHOTOMETRY 3. Practicing Photometry – Once you have mastered the imagingstep

Strany 25 - 2.5.2 Flat Frames

110 AUTOSTAR CCD PHOTOMETRY INDEX (Contd.)Page(s)HHA (Hour Angle) 47, 48, 52HAD (Hole Accumulat

Strany 26

AUTOSTAR CCD PHOTOMETRY 111INDEX (Contd.)Page(s)Mμ (mu)– see Transformation Coefficients 29,

Strany 27 - 3. Raw Data Reduction

112 AUTOSTAR CCD PHOTOMETRY INDEX (Contd.)Page(s)Profile Line 22Projects 99QRRASC Observers Han

Strany 28 - 3.2 Calibrating the Images

AUTOSTAR CCD PHOTOMETRY 113INDEX (Contd.)Page(s)Stop Command Checkbox 14Supernova (SNe) 102Sup

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114 AUTOSTAR CCD PHOTOMETRY NOTES

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AUTOSTAR CCD PHOTOMETRY 115NOTES

Strany 31 - 3.3 Differential Magnitudes

116 AUTOSTAR CCD PHOTOMETRY NOTES

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AUTOSTAR CCD PHOTOMETRY 117NOTES

Strany 33

118 AUTOSTAR CCD PHOTOMETRY NOTES

Strany 34 - Centering Box Size Settings

AUTOSTAR CCD PHOTOMETRY 32. Data AcquisitionBefore any photometry can be done on the star

Strany 35

4 AUTOSTAR CCD PHOTOMETRY The AutoStar Envisage window will then open (Fig. 2-2). After afe

Strany 36 - 3.4 ImageInfo File

AUTOSTAR CCD PHOTOMETRY 52.3 Setting DirectoriesBefore going further, you may wish to set

Strany 37 - 4. Additional Data Reduction

6 AUTOSTAR CCD PHOTOMETRY 2.4 Taking Dark FramesThe following procedure should be performe

Strany 38 - 4.2 DATA LIST

AUTOSTAR CCD PHOTOMETRY 7Note: There will be one Master Dark Frame for each exposure 1.0s

Strany 39 - 5. Advanced Data Reduction

8 AUTOSTAR CCD PHOTOMETRY You now have a set of Master Dark Frames for the desiredexposure

Strany 40

AUTOSTAR CCD PHOTOMETRY 9Figure 2-7. Envisage Screen With CCD Camera Operating.2. Determin

Strany 41 - APPENDIXES

Copyright © 2007 Jeffrey L. Hopkins and Gene A. LucasAll Rights ReservedReproduction or translation of any part of this work [except wherespecifically

Strany 42

10 AUTOSTAR CCD PHOTOMETRY Figure 2-8. Exposure Setting Window.Note: Live Exp exposure times

Strany 43 - Modifying the DSI Pro Camera

AUTOSTAR CCD PHOTOMETRY 116. File Naming -- Note: CCD photometry imaging creates anenormou

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12 AUTOSTAR CCD PHOTOMETRY 8. Unless the sky is exceptionally steady, leave the image quality

Strany 45

AUTOSTAR CCD PHOTOMETRY 13Note: If an Alt/Az mount is used, a second box can be drawnaround

Strany 46 - Filter Wheel

14 AUTOSTAR CCD PHOTOMETRY 11. Select Start. (Fig. 2-17.)Figure 2-17. Start Button.12. After

Strany 47 - CCD Photometric Filters

AUTOSTAR CCD PHOTOMETRY 1517. Repeat Steps 1 - 16 for each additional set of data pointsdesi

Strany 48

16 AUTOSTAR CCD PHOTOMETRY Note: It is very important that the optical train is not changedb

Strany 49 - Cooling the DSI Pro

AUTOSTAR CCD PHOTOMETRY 173. Raw Data ReductionThis is the stage where the photometric data

Strany 50 - TEC Cooler Mods

18 AUTOSTAR CCD PHOTOMETRY 3.2 Calibrating the Images1. Click on one of the image files in t

Strany 51 - Parts List

AUTOSTAR CCD PHOTOMETRY 194. Select all the images of a given filter (e.g., the V filter ima

Strany 52

AUTOSTAR CCD PHOTOMETRY iPrefaceThere are at least two avenues to CCD photometry. First i

Strany 53 - Wiring and Schematics

20 AUTOSTAR CCD PHOTOMETRY 6. A Calibrate window will be displayed (Fig. 3-4) where you canse

Strany 54 - Optional Accessories

AUTOSTAR CCD PHOTOMETRY 21Figure 3-5. New Calibrated Image Files.9. To organize the calibrat

Strany 55 - Calculating the Air Mass

22 AUTOSTAR CCD PHOTOMETRY Note: AutoStar automatically adjusts the monitor display contrast

Strany 56 - Getting Started

AUTOSTAR CCD PHOTOMETRY 23You will see the term “centroid” appear many times when readingabo

Strany 57 - Star's Declination (δ)

24 AUTOSTAR CCD PHOTOMETRY Note: This will set the Reference magnitude for the Comparisonsta

Strany 58

AUTOSTAR CCD PHOTOMETRY 25Figure 3-10. Magnitude Determination Window.8. Click on OK. Do not

Strany 59

26 AUTOSTAR CCD PHOTOMETRY 12. Repeat Steps 1 - 11 for the other filter images. A text log fi

Strany 60

AUTOSTAR CCD PHOTOMETRY 274. Additional Data ReductionThe raw magnitude data now must be us

Strany 61

28 AUTOSTAR CCD PHOTOMETRY This program was created quickly and saves a great deal of workwhe

Strany 62 - LST Example

AUTOSTAR CCD PHOTOMETRY 295. Advanced Data Reduction5.1 Reducing the Raw Magnitudes to Sta

Strany 63 - Determining the Air Mass

ii AUTOSTAR CCD PHOTOMETRY When purchasing a DSI Pro camera, the AutoStar Suite™telescope c

Strany 64

30 AUTOSTAR CCD PHOTOMETRY Extinction Coefficients(Not needed for differential photometry)k&a

Strany 65 - Appendix C

AUTOSTAR CCD PHOTOMETRY 31APPENDIXESA. Modifying the DSI Pro Camera 33B. Calculating the Air

Strany 66

32 AUTOSTAR CCD PHOTOMETRY NOTES

Strany 67

AUTOSTAR CCD PHOTOMETRY 33APPENDIX AModifying the DSI Pro CameraIntroductionThe color versio

Strany 68

34 AUTOSTAR CCD PHOTOMETRY The Affordable Meade Deep Sky Imager (DSI)While CCD cameras for as

Strany 69 - APPENDIX D

AUTOSTAR CCD PHOTOMETRY 35The set of standard RGB astro imaging filters is provided at extra

Strany 70 - Equations

36 AUTOSTAR CCD PHOTOMETRY Note: There are four hex-head screws at the corners of the camera

Strany 71 - – V). In

AUTOSTAR CCD PHOTOMETRY 37Figure A-3. Disassembled ATIK Filter Wheel.CCD Photometric Filters

Strany 72

38 AUTOSTAR CCD PHOTOMETRY Figure A-4 shows the ATIK filter wheel disk with BVRI filtersinsta

Strany 73

AUTOSTAR CCD PHOTOMETRY 39Figure A-5. Standard UBVRI Johnson-CousinsPhotometry Filter Passba

Strany 74

AUTOSTAR CCD PHOTOMETRY iiiTABLE OF CONTENTSPagePREFACE i1. Introduction 11.1 Learning St

Strany 75

40 AUTOSTAR CCD PHOTOMETRY This cooling modification can be used on all the DSI seriescameras

Strany 76

AUTOSTAR CCD PHOTOMETRY 41Parts ListThe following List of Parts, available from All Electron

Strany 77 - APPENDIX E

42 AUTOSTAR CCD PHOTOMETRY Now place the center of the TEC (against the camera back) so it is

Strany 78 - Observational Data

AUTOSTAR CCD PHOTOMETRY 43Wiring and SchematicsThe polarity of the TEC is a bit ambiguous, b

Strany 79

44 AUTOSTAR CCD PHOTOMETRY ConclusionWith the addition of BVRI photometric filters and a few

Strany 80 - Coefficient Calculation

AUTOSTAR CCD PHOTOMETRY 45APPENDIX BCalculating the Air MassIntroductionThe listed corrected

Strany 81

46 AUTOSTAR CCD PHOTOMETRY Getting StartedA star's Air Mass, X, is the effective path le

Strany 82 - Standard Star Magnitudes

AUTOSTAR CCD PHOTOMETRY 47Two equations are in common use that take into account not onlythe

Strany 83

48 AUTOSTAR CCD PHOTOMETRY Similarly, a star situated at the South Celestial Pole (SCP) would

Strany 84

AUTOSTAR CCD PHOTOMETRY 49Where: LST is the local sidereal time and α is the star's Ri

Strany 85 - Coefficient Determination

iv AUTOSTAR CCD PHOTOMETRY TABLE OF CONTENTS – APPENDIXESPageA. Modifying a DSI Pro Camera 3

Strany 86

50 AUTOSTAR CCD PHOTOMETRY Where:GMS0hUT is Greenwich Mean Sidereal Time at UT = 00:00:00.Lon

Strany 87 - Determining β and ζ

AUTOSTAR CCD PHOTOMETRY 51It is better to have just one LST per date and location at UT =00:

Strany 88

52 AUTOSTAR CCD PHOTOMETRY LST ExampleFor 21 October 2005 at UT = 07h 10m 00s or 7.166667 hou

Strany 89 - Determining γ and ζ

AUTOSTAR CCD PHOTOMETRY 53Alternatively, the hour angle of a star can be determined directly

Strany 90 - Determining ε and ζ

54 AUTOSTAR CCD PHOTOMETRY An example of a FileMaker Pro program printout used at HPO forcalc

Strany 91

AUTOSTAR CCD PHOTOMETRY 55Appendix CDetermining Standard Star DataObserving Standard Stars i

Strany 92 - Determining μ and ζ

56 AUTOSTAR CCD PHOTOMETRY Figure C-1 shows a wide field view of M67, from the FirstPalomar S

Strany 93

AUTOSTAR CCD PHOTOMETRY 57Figure C-2. M67 CCD Image Taken at HPO.Table C-1 shows sample raw

Strany 94

58 AUTOSTAR CCD PHOTOMETRY Figure C-3. M67 Finder Chart for Star Identifications.BVRI Standar

Strany 95 - Least Squares Method

AUTOSTAR CCD PHOTOMETRY 59APPENDIX DDetermining BVRI Extinction CoefficientsIntroductionDiff

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AUTOSTAR CCD PHOTOMETRY vTABLE OF CONTENTS – APPENDIXES (Contd.)PageE. Determining BVRI Co

Strany 97

60 AUTOSTAR CCD PHOTOMETRY Terms and DefinitionsIt is very important to define terms and keep

Strany 98

AUTOSTAR CCD PHOTOMETRY 61Where:io, ro, vo, and io are magnitudes corrected for extinctionk&

Strany 99 - FITS Header

62 AUTOSTAR CCD PHOTOMETRY One of the suggested stars is labeled M67-081. Tables D-1 andD-2 l

Strany 100 - Header Details

AUTOSTAR CCD PHOTOMETRY 63Table D-3. Calculated Instrumental Magnitudes.I Filter R FilterUT

Strany 101 - APPENDIX H

64 AUTOSTAR CCD PHOTOMETRY Figure D-1. Plot of i versus X.Figure D-2. Plot of r versus X.

Strany 102 - Light Box Construction Notes

AUTOSTAR CCD PHOTOMETRY 65Figure D-3. Plot of v versus X.Figure D-4. Plot of b versus X.

Strany 103

66 AUTOSTAR CCD PHOTOMETRY The slopes are then determined and are equated to the filter band&

Strany 104

AUTOSTAR CCD PHOTOMETRY 67APPENDIX EDetermining BVRI Color CoefficientsIntroductionDifferent

Strany 105 - HPO Light Box

68 AUTOSTAR CCD PHOTOMETRY Terms and DefinitionsNote: (V – I) is used in the following equat

Strany 106

AUTOSTAR CCD PHOTOMETRY 69Because of the volume of data involved, it is suggested that acomp

Strany 107

vi AUTOSTAR CCD PHOTOMETRY LIST OF FIGURESPage2-1. Meade AutoStar Suite Planetarium Screen -

Strany 108

70 AUTOSTAR CCD PHOTOMETRY Figure E-2 shows a screen shot of another part of the FileMakerPro

Strany 109 - APPENDIX I

AUTOSTAR CCD PHOTOMETRY 71Instrumental Magnitude CalculationsTable E-2 lists a summary of th

Strany 110 - Planetary Photometry

72 AUTOSTAR CCD PHOTOMETRY Table E-4. Equations and Extinction Values.Equation Extinction fr

Strany 111 - Stellar Photometry

AUTOSTAR CCD PHOTOMETRY 73Color Transform and Zero Point CalculationsTables E-6(a), (b), and

Strany 112 - Asteroid Photometry

74 AUTOSTAR CCD PHOTOMETRY Color Transform Coefficient Equations((V – I) – (v – i)o) = (1 – 1

Strany 113 - References

AUTOSTAR CCD PHOTOMETRY 75Coefficient DeterminationDetermining α and ζviA plot of ((V – I) –

Strany 114 - Web Resources

76 AUTOSTAR CCD PHOTOMETRY Figure E-3. ((V – I) – (v– i)o) versus (V– I) Plot.Slope = (1 – 1

Strany 115

AUTOSTAR CCD PHOTOMETRY 77Determining β and ζvrA plot of ((V – R) – (v – r)o) versus (V – R)

Strany 116

78 AUTOSTAR CCD PHOTOMETRY Figure E-4. ((V – R) – (v – r)o) versus (V – R) Plot.Slope = (1 –

Strany 117

AUTOSTAR CCD PHOTOMETRY 79Determining γ and ζriA plot of ((R – I) – (r – i)o) versus (R – I)

Strany 118 - INDEX (Contd.)

AUTOSTAR CCD PHOTOMETRY viiLIST OF FIGURES (Contd.)PageA-5. Standard UBVRI Johnson-Cousins P

Strany 119

80 AUTOSTAR CCD PHOTOMETRY Slope = 1 – 1 / γ)(1 – 1 / γ) = [Δ((R – I) – (r– i)o)) / Δ(R – I)]

Strany 120

AUTOSTAR CCD PHOTOMETRY 81Figure E-6. (V – vo) versus ε * (B – V) Plot.Slope = εε = Δ(V – v)

Strany 121

82 AUTOSTAR CCD PHOTOMETRY Determining μ and ζbvA plot of ((B – V) – (b – v)o) versus (B – V)

Strany 122

AUTOSTAR CCD PHOTOMETRY 83Figure E-7. ((B – V) – (b – v)o) versus (B – V) Plot.Slope = (1 –

Strany 123

84 AUTOSTAR CCD PHOTOMETRY SummaryTable E-12 gives a summary of the BVRI Color Transformation

Strany 124

AUTOSTAR CCD PHOTOMETRY 85APPENDIX FLeast Squares MethodIntroductionWhile it is possible to

Strany 125

86 AUTOSTAR CCD PHOTOMETRY Table F-1. Sample Data.N Data xixi2Data yi(xi * yi)1 1.0 1.00 0.47

Strany 126

AUTOSTAR CCD PHOTOMETRY 87Plotting a Graph and Drawing the Straight LineFigure F–1 shows a m

Strany 127

88 AUTOSTAR CCD PHOTOMETRY NOTES

Strany 128

AUTOSTAR CCD PHOTOMETRY 89APPENDIX GFITS HeaderIntroductionImages saved as FITS images (.fts

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