NASA Logo

NTRS

NTRS - NASA Technical Reports Server

Press Enter or click the Search button to begin your search.

Back to Results
Why Do Compact Active Galactic Nuclei at High Redshift Twinkle Less?The fraction of compact active galactic.nuclei (AGNs) that exhibit interstellar scintillation (ISS) at radio wavelengths, as well as their scintillation amplitudes, have been found to decrease significantly for sources at redshifts z approx greater than 2. This can be attributed to an increase in the angular sizes of the mu-as-scale cores or a decrease in the flux densities of the compact mu-as cores relative to that of the mas-scale components with increasing redshift, possibly arising from (1) the space-time curvature of an expanding Universe, (2) AGN evolution, (3) source selection biases, (4) scatter broadening in the ionized intergalactic medium (IGM), or (5) gravitational lensing. We examine the frequency scaling of this redshift dependence of ISS to determine its origin, using data from a dual-frequency survey of ISS of 128 sources at 0 approx < z approx < 4. We present a novel method of analysis which accounts for selection effects in the source sample. We determine that the redshift dependence of ISS is partially linked to the steepening of source spectral indices (alpha (sup 8.4, sub 4.9)) with redshift, caused either by selection biases or AGN evolution, coupled with weaker ISS in the alpha (sup 8.4, sub 4.9) < -0.4 sources. Selecting only the -0.4 < alpha (sup 8.4, sub 4.9) < 0.4 sources, we find that the redshift dependence of ISS is still significant, but is not significantly steeper than the expected (1 + z)(exp 0.5) scaling of source angular sizes due to cosmological expansion for a brightness temperature and flux-limited sample of sources. We find no significant evidence for scatter broadening in the IGM, ruling it out as the main cause of the redshift dependence of ISS. We obtain an upper limit to IGM scatter broadening of approx. < 110 mu-as at 4.9 GHz with 99% confidence for all lines of sight, and as low as approx. < 8 mu-as for sight-lines to the most compact, approx 10 mu-as sources.
Document ID
20120013456
Acquisition Source
Goddard Space Flight Center
Document Type
Other
Authors
Koay, J. Y.
(Curtin Univ. of Technology Bentley, Australia)
Macquart, J.-P.
(Curtin Univ. of Technology Bentley, Australia)
Bignall, H. E.
(Curtin Univ. of Technology Bentley, Australia)
Reynolds, C.
(Curtin Univ. of Technology Bentley, Australia)
Rickett, B. J.
(California Univ., San Diego La Jolla, CA, United States)
Jauncey, D. L.
(Australia Telescope National Facility Epping, Australia)
Pursimo, T.
(Nordic Optical Telescope Santa Cruz de La Palma, Spain)
Lovell, J. E. J.
(Tasmania Univ. Hobart, Australia)
Kedziora-Chudczer, L.
(New South Wales Univ. Sydney, Australia)
Ojha, R.
(NASA Goddard Space Flight Center Greenbelt, MD, United States)
Date Acquired
August 26, 2013
Publication Date
January 1, 2012
Subject Category
Astrophysics
Report/Patent Number
GSFC.ABS.6461.2012
Report Number: GSFC.ABS.6461.2012
Funding Number(s)
CONTRACT_GRANT: NNH06CC03B
Distribution Limits
Public
Copyright
Public Use Permitted.
No Preview Available