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Page 1: Extracting the Mystery from the Red Rectangle Meghan Canning, Zoran Ninkov, and Robert Slawson Chester Carlson Center for Imaging Science Rochester Institute.

Extracting the Mystery from the Red Rectangle

Meghan Canning, Zoran Ninkov, and Robert Slawson

Chester Carlson Center for Imaging Science

Rochester Institute of Technology

Page 2: Extracting the Mystery from the Red Rectangle Meghan Canning, Zoran Ninkov, and Robert Slawson Chester Carlson Center for Imaging Science Rochester Institute.

Overview

• Research Objectives

• Background

• Methodology

• Progress To Date

• Further Investigation

• Conclusions

Page 3: Extracting the Mystery from the Red Rectangle Meghan Canning, Zoran Ninkov, and Robert Slawson Chester Carlson Center for Imaging Science Rochester Institute.

Objectives

• Short Term– To Accurately Model and Remove Stellar

Objects from Spectrophotometric Images of Emission Nebula by Way of Profile Fitting

• Long Term– To Characterize the Extended Emission

Present in the “Red Rectangle”

Page 4: Extracting the Mystery from the Red Rectangle Meghan Canning, Zoran Ninkov, and Robert Slawson Chester Carlson Center for Imaging Science Rochester Institute.

Emission Nebula

• Red Rectangle– Star HD44179– Biconical nebula– X-shaped pattern in

red region of visible spectrum

Page 5: Extracting the Mystery from the Red Rectangle Meghan Canning, Zoran Ninkov, and Robert Slawson Chester Carlson Center for Imaging Science Rochester Institute.

Emission Nebula

– Optical Spectroscopy

Page 6: Extracting the Mystery from the Red Rectangle Meghan Canning, Zoran Ninkov, and Robert Slawson Chester Carlson Center for Imaging Science Rochester Institute.

Methodology

• Acquire spectrophotometric images of Red Rectangle

• Fit a point spread function to nebula’s central star at reference wavelength (525 nm)

• Remove profile from images corresponding to spectral emission lines of interest

Page 7: Extracting the Mystery from the Red Rectangle Meghan Canning, Zoran Ninkov, and Robert Slawson Chester Carlson Center for Imaging Science Rochester Institute.

Image Acquisition

• UTSO 60 cm telescope• Front-illuminated Kodak KAF-4200 CCD

inside Photometrics CH-250 camera head

Page 8: Extracting the Mystery from the Red Rectangle Meghan Canning, Zoran Ninkov, and Robert Slawson Chester Carlson Center for Imaging Science Rochester Institute.

Image Acquisition

• Cambridge Research & Instrumentation, Inc. Varispec Tunable Liquid Crystal Filter– Fixed spectral bandwidth of 10 nm– Central wavelength tunable between 400

and 700 nm– 31% transmittance at 700nm; 5% at 435nm

Page 9: Extracting the Mystery from the Red Rectangle Meghan Canning, Zoran Ninkov, and Robert Slawson Chester Carlson Center for Imaging Science Rochester Institute.

Spectral Characteristics

Exposure time = 800 sec

Image 1 - 525 nm Image 2 - 638 nm

Exposure time = 400 sec

Page 10: Extracting the Mystery from the Red Rectangle Meghan Canning, Zoran Ninkov, and Robert Slawson Chester Carlson Center for Imaging Science Rochester Institute.

Methodology

• Find coordinates of peak intensity of like objects in Image 1 & Image 2

• Calculate scaling with respect to intensity of Red Rectangle in Image 1

• Fit appropriately scaled PSF

• Subtract profile from coordinates of peak intensity

Page 11: Extracting the Mystery from the Red Rectangle Meghan Canning, Zoran Ninkov, and Robert Slawson Chester Carlson Center for Imaging Science Rochester Institute.

Processing

• Image Reduction Analysis Facility– DAOPHOT package (NOAO/Tuscon)

• DAOFIND - locates coordinates of peak intensity

• PHOT - calculates photometry parameters• PSF - Fits a point spread function • ALLSTAR - Removes psf from stellar

objects

Page 12: Extracting the Mystery from the Red Rectangle Meghan Canning, Zoran Ninkov, and Robert Slawson Chester Carlson Center for Imaging Science Rochester Institute.

Photometry Parameters

Object

Red Rectangle

525nm

Faint Star

525nm

Red Rectangle

638nm

Peak Intensity PSF Scale Factor

6279.226 1.0000

2602.09 1.2430

7837.154 0.4144

Page 13: Extracting the Mystery from the Red Rectangle Meghan Canning, Zoran Ninkov, and Robert Slawson Chester Carlson Center for Imaging Science Rochester Institute.

Imaging

• Fit Gaussian Profile at 525 nm

– FWHM = 10 pixels– PSF radius = 37

pixels

Column (pixels)

Pix

el V

alu e

Page 14: Extracting the Mystery from the Red Rectangle Meghan Canning, Zoran Ninkov, and Robert Slawson Chester Carlson Center for Imaging Science Rochester Institute.

Profile Testing

• Does the psf accurately model the central star at 525 nm?

• Can the psf be accurately scaled to fit other stellar objects:– within the 525 nm frame?– in frames recorded at 638 nm?

Page 15: Extracting the Mystery from the Red Rectangle Meghan Canning, Zoran Ninkov, and Robert Slawson Chester Carlson Center for Imaging Science Rochester Institute.

PSF Removal - Central Star =525 nm

Column (pixels)

Pix

el V

alu

e

Page 16: Extracting the Mystery from the Red Rectangle Meghan Canning, Zoran Ninkov, and Robert Slawson Chester Carlson Center for Imaging Science Rochester Institute.

PSF Removal - Faint Star =525 nm

Column (pixels)

Pix

el V

alu

e

Page 17: Extracting the Mystery from the Red Rectangle Meghan Canning, Zoran Ninkov, and Robert Slawson Chester Carlson Center for Imaging Science Rochester Institute.

PSF Removal - Red Rectangle

• Reconstructed Image of Nebulosity at = 638 nm

Page 18: Extracting the Mystery from the Red Rectangle Meghan Canning, Zoran Ninkov, and Robert Slawson Chester Carlson Center for Imaging Science Rochester Institute.

Red Rectangle - 638 nm

Red Rectangle -Reconstructed

Column (pixels)

Pix

el V

alu e

Column (pixels)

Pix

el V

alu e

Page 19: Extracting the Mystery from the Red Rectangle Meghan Canning, Zoran Ninkov, and Robert Slawson Chester Carlson Center for Imaging Science Rochester Institute.

Analysis

• Virtually Faultless Removal of psf from central star in Image 1– Only Poisson noise from fit remaining

• Removal of psf from faint stellar object in Image 1 results in a small peak intensity (~250) surrounded by a negative “dip”

Page 20: Extracting the Mystery from the Red Rectangle Meghan Canning, Zoran Ninkov, and Robert Slawson Chester Carlson Center for Imaging Science Rochester Institute.

Analysis

• PSF is not good enough– Fit is too small at the peak intensity; too

bright in the wings

• May be some emission at 525 nm causing an inaccurate fit to the central star

• Consequently -extended emission at 638 nm is inadequately reconstructed

Page 21: Extracting the Mystery from the Red Rectangle Meghan Canning, Zoran Ninkov, and Robert Slawson Chester Carlson Center for Imaging Science Rochester Institute.

Further Investigation

• Fit psf to an average profile taken from several stars in Image 1– Small FOV - OTF constant over frame

• Apply profile testing methods

• Verify registration/centering accuracy

Page 22: Extracting the Mystery from the Red Rectangle Meghan Canning, Zoran Ninkov, and Robert Slawson Chester Carlson Center for Imaging Science Rochester Institute.

Conclusions

• Many variables involved in psf fitting

• Encouraging Beginning– Further testing of psf accuracy and

centering algorithms must be completed before success in generating a representation of the extended emission can be achieved