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Deep J-band imaging of high redshift QSO candidates with the Himalayan Chandra Telescope
Journal article   Peer reviewed

Deep J-band imaging of high redshift QSO candidates with the Himalayan Chandra Telescope

Tomotsugu Goto and Devendra Ojha
Bulletin of the Astronomical Society of India, Vol.34, p.291
2006

Abstract

quasars:individual;cosmology;early universe;black hole;physics
High redshift QSOs (redshift>5.7) are highly important objects. If such QSOs may be found, their spectra will reveal the onset of reionization of the intergalactic medium (Gunn-Peterson trough), and provide precious insights into the re-ionization epoch in the very early universe. Here we report our pilot attempt to follow-up high redshift QSOs with the Himalayan Chandra Telescope. Deep J-band imaging was performed on three high redshift QSO candidates colour-selected from the SDSS, using the near-infrared imager. Although none of the targets turned out to be likely high redshift QSOs, careful data reduction shows that the data reach the required depth, proving that the Himalayan Chandra Telescope is a powerful tool to follow-up high redshift QSO candidates.

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