東京大学 · 物理学・天文学
Yoshiaki Ono教授の研究室は、宇宙の最も遠い領域に位置する高赤方偏移銀河の観測と解析に焦点を当てており、特に赤方偏移z ≳ 6の時代における星形成銀河の性質を、ハッブル・ジェームズ・ウブレット望遠鏡(JWST)やKeck望遠鏡を用いた深宇宙スペクトロスコピーと画像解析によって解明しています。主な研究対象は、Lya線発光銀河(LAE)やzドロップアウト銀河のスペクトル的・光度的特性、星形成歴、サイズ・形態の進化です。近年では、JWSTの高感度・高分解能データを活用し、宇宙初期の銀河の構造的・星形成的性質を精密に解明する研究が進んでいます。
Figures are computed from collected data and may differ slightly.
We present the results of our ultra-deep Keck/DEIMOS spectroscopy of z-dropout galaxies in the SDF and GOODS-N. For 3 out of 11 objects, we detect an emission line at ~ 1um with a signal-to-noise ratio of ~ 10. The lines show asymmetric profiles with high weighted skewness values, consistent with being Lya, yielding redshifts of z=7.213, 6.965, and 6.844. Specifically, we confirm the z=7.213 object in two independent DEIMOS runs with different spectroscopic configurations. The z=6.965 object is
We investigate the stellar populations of Lyman alpha emitters (LAEs) at z=5.7 and 6.6 in a 0.65 deg^2 sky of the Subaru/XMM-Newton Deep Survey (SXDS) Field, using deep images taken with Subaru/Suprime-Cam, UKIRT/WFCAM, and Spitzer/IRAC. We produce stacked multiband images at each redshift from 165 (z=5.7) and 91 (z=6.6) IRAC-undetected objects, to derive typical spectral energy distributions (SEDs) of z~6-7 LAEs for the first time. The stacked LAEs have as blue UV continua as the HST/WFC3 z-dro
We investigate the stellar populations of Ly emitters (LAEs) at z = 3.1 and 3.7 in 0.65 deg 2 of the Subaru/XMM-Newton Deep Field, based on rest-frame ultraviolet-to-optical photometry obtained from the Subaru/XMM-Newton Deep Survey, the UKIRT Infrared Deep Sky Survey/ Ultra Deep Survey (UKIDSS/UDS), and the Spitzer legacy survey of the UKIDSS/UDS. Among a total of 302 LAEs (224 for z = 3.1 and 78 for z = 3.7), only 11 are detected in the K band, i.e. brighter than K(3 ) = 24.1 mag. Eight of the
Abstract We present morphologies of galaxies at z ≳ 9 resolved by JWST/NIRCam 2–5 μ m imaging. Our sample consists of 22 galaxy candidates identified by stringent dropout and photo- z criteria in GLASS, CEERS, SMACS J0723, and Stephan’s Quintet flanking fields, one of which has been spectroscopically identified at z = 11.44. We perform surface brightness (SB) profile fitting with GALFIT for six bright galaxies with a signal-to-noise ratio = 10–40 on an individual basis and for stacked faint gala
We analyze the redshift- and luminosity-dependent sizes of dropout galaxy candidates in the redshift range z â¼ 7-12 using deep images from the 2012 Hubble Ultra Deep Field (UDF12) campaign, which offers two advantages over that used in earlier work. First, we utilize the increased signal-to-noise ratio offered by the UDF12 imaging to provide improved measurements for known galaxies at z â 6.5-8 in the HUDF. Second, because the UDF12 data have allowed the construction of the first robust gala
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