Decomposition of the Superwind in M82
Youichi Ohyama, Yoshiaki Taniguchi, Masanori Iye, Michitoshi Yoshida, Kazuhiro Sekiguchi, Tadafumi Takata, Yoshihiko Saito, Koji S. Kawabata, Nobunari Kashikawa, Kentaro Aoki, Toshiyuki Sasaki, George Kosugi, Kiichi Okita, Yasuhiro Shimizu, Motoko Inata, Noboru Ebizuka Tomohiko Ozawa, Yasushi Yadomaru, Hiroko Taguchi, Ryo Asai
Abstract
We present new optical images (B, V, and Hα) of the archetypical starburst/superwind galaxy M82 obtained with the 8.2 m Subaru Telescope to reveal new detailed structures of the superwind-driven nebula and the high-latitude dark lanes. The emission-line nebula is decomposed into (1) a ridge-dominated component comprising numerous filament/loop sub-structures whose overall morphology appears as a pair of narrow cylinders, and (2) a diffuse component extended over much wider opening angle from the nucleus. We suggest that these two components have different origins. The ridge-dominated component appears as a pair of cylinders rather than a pair of cones. Since this morphological property is similar to that of hot plasma probed by soft X-ray, this component seems to surround the hot plasma. On the other hand, the diffuse component may arise from dust grains which scatter stellar light from the galaxy. Since inner region of this component is seen over the prominent ^ ^ X"-shaped dark lanes streaming out from the nuclear region and they can be reproduced as a conical distribution of dust grains, there seems to be a dusty cold outflow as well as the hot one probed by soft X-ray and shock-excited optical emission lines. If this is the case, the presence of such high-latitude dust grains implies that neutral gaseous matter is also blown out during the course of the superwind activity.
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