Constraining Dust and Molecular Gas Properties in Lyman Alpha Blobs at z~3
Yujin Yang, Roberto Decarli, Helmut Dannerbauer, Fabian Walter, Axel, Weiss, Christian Leipski, Arjun Dey, Scott C. Chapman, Emeric Le Floc'h,, Moire K. M. Prescott, Roberto Neri, Colin Borys, Yuichi Matsuda, Toru Yamada,, Tomoki Hayashino, Christian Tapken, Karl M. Menten

TL;DR
This study investigates dust and molecular gas in two high-redshift Lyman alpha blobs, finding limited molecular gas and challenging previous detections, highlighting the need for more sensitive observations.
Contribution
It provides new constraints on dust and molecular gas properties in z~3 Lyman alpha blobs using multi-wavelength observations and refutes previous CO detections.
Findings
LABd05 has an AGN-starburst composite SED with high FIR luminosity.
No CO emission detected in either blob, indicating modest molecular gas reservoirs.
Previous tentative CO detection in SSA22-LAB01 is statistically rejected.
Abstract
In order to constrain the bolometric luminosities, dust properties and molecular gas content of giant Lyman alpha nebulae, the so-called Lyman alpha blobs, we have carried out a study of dust continuum and CO line emission in two well-studied representatives of this population at z ~ 3: a Lya blob discovered by its strong Spitzer MIPS 24um detection (LABd05; Dey et al. 2005) and the Steidel blob 1 (SSA22-LAB01; Steidel et al. 2000). We find that the spectral energy distribution of LABd05 is well described by an AGN-starburst composite template with L(FIR) = (4.0 +/- 0.5) x 10^12 Lsun, comparable to high-z sub-millimeter galaxies and ultraluminous infrared galaxies. New APEX/LABOCA 870um measurements rule out the reported SCUBA detection of the SSA22-LAB01 (S[850um] = 16.8 mJy) at the > 4sigma level. Consistent with this, ultra-deep Plateau de Bure Interferometer (PdBI) observations with…
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