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Nature of the strongly lensed submillimeter galaxy SMM J14011+0252

机译:Nature of the strongly lensed submillimeter galaxy SMM J14011+0252

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摘要

We have carried out near-infrared JHK spectroscopy of the gravitationally lensed submillimeter galaxy SMM J14011+0252 at z = 2.565, using the OH-airglow suppressor and the Cooled Infrared Camera and Spectrograph for OHS on the Subaru Telescope. This object consists of two optical components, J1 and J2, which are lensed by the cluster Abell 1835. J1 suffers additional strong lensing by a foreground galaxy at z = 0.25 in the cluster. The rest-frame optical Halpha, Hbeta, and O II lambda3727 lines are detected in both J1 and J2, and N II lambdalambda6548, 6583 lines are also detected in J1. A diagnosis of emission-line ratios shows that the excitation source of J1 is stellar in origin, consistent with previous X-ray observations. The continua of J1 and J2 show breaks at rest-frame 4000 Angstrom, indicating a relatively young age. Combined with optical photometry, we have carried out model-spectrum fitting of J2 and find that it is a very young (similar to 50 Myr) galaxy of rather small mass (similar to 10(8) M-.) that suffers some amount of dust extinction. A new gravitational lensing model is constructed to assess both the magnification factor and contamination from the lensing galaxy of the component J1, using a Hubble Space Telescope F702W image. We have found that J1 suffers strong lensing with magnification of similar to30, and its stellarmass is estimated to be less than or similar to10(9) M-.. These results suggest that SMMJ14011+0252 is a major merger system at high redshift that undergoes intense star formation but is not a formation site of a giant elliptical galaxy. Still having plenty of gas, it will transform most of the gas into stars and will evolve into a galaxy of less than or similar to10(10) M-.. Therefore, this system is possibly an ancestor of a present-day, less massive galaxy such as a midsized elliptical galaxy or a spiral galaxy.
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