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Schedule & History †
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Abstract †
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- 7/23¡¡ Benjamin Wu (University of Florida)¡¡GMC Collisions as Triggers of Star Formation
- We utilize magnetohydrodynamic (MHD) simulations with adaptive mesh refinement (AMR) to explore the process of GMC-GMC collisions as a potential trigger for star formation. We start by implementing new PyPDR/Cloudy-based density/temperature/extinction-dependent heating and cooling functions in Enzo that span the atomic to molecular transition and can return detailed diagnostic information. We then explore a suite of idealized 2D simulations for GMC-GMC collisions, which track the fate of an initially stable clump embedded within one of the clouds. Different collision velocities, impact parameters, magnetic field strengths and orientations are considered, as is the role of ambipolar diffusion. We determine the ability of cloud collisions to compress the clump and perhaps initiate its global collapse. We then extend these calculations to 3D, including introduction of initial turbulence into the clouds. Filament creation and interaction is visualized and analyzed. We discuss potential diagnostic signatures of GMC collisions and compare to some proposed example cases in the Galaxy.
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- ÂÀÍÛ¥³¥í¥Ê¡¢Ãϵ弧µ¤·÷¡¢¤¢¤ë¤¤¤Ï¹â¥¨¥Í¥ë¥®¡¼Å·ÂδĶ¤Ç¤Ï¡¢¼§µ¤°µ >> ¥×¥é¥º¥Þ°µÎϤÎÄã¦Â¥×¥é¥º¥ÞÃæ¤Ç¡¢¼§µ¤¥ê¥³¥Í¥¯¥·¥ç¥ó¤¬µ¯¤¤Æ¤¤¤ë¡£Äã¦Â´Ä¶¤Ç¤Î£Í£È£Ä¥ê¥³¥Í¥¯¥·¥ç¥ó¤Ï¡¢Ä¹Ç¯¤Ë¤ï¤¿¤Ã¤Æ¸¦µæ¤µ¤ì¤Æ¤¤¤ë¥Æ¡¼¥Þ¤Ç¤¢¤ë¤¬¡¢ºÇ¶á¡¢¸½ÂåŪ¤Ê¥·¥ß¥å¥ì¡¼¥·¥ç¥óµ»Ë¡¤¬Æ³Æþ¤µ¤ì¤ë¤È¤È¤â¤Ë¿·¤·¤¤Â¦Ì̤¬¸«¤¨¤Æ¤¤¿¡£Î㤨¤Ð¡¢Zenitani & Miyoshi (2011) ¤Ï¡¢¥×¥é¥º¥Þ¤¬Áݤ½¸¤á¤é¤ì¤¿¥×¥é¥º¥â¥¤¥É¡Ê¼§µ¤Åç¡Ë¼þÊդ˿·¤·¤¤¾×·âÇȹ½Â¤¤¬¤Ç¤¤ë¤³¤È¤òÊó¹ð¤·¤Æ¤¤¤ë¡£ ËÜȯɽ¤Ç¤Ï¡¢¤³¤Î·ë²Ì¤ò¾¯¤·°ã¤¦»ëÅÀ¡Ê°µ½ÌÀήÂÎÎϳء¿¹â®ήÂÎÎϳءˤǺƹͤ¹¤ë¡£ ήÂÎÎϳؤǤϡ¢Åµ·¿Åª¤Êή¤ì®ÅÙ¤¬²»Â®¤ÈƱÄøÅ٤ˤʤë¤È¡¢¤µ¤Þ¤¶¤Þ¤Ê°µ½ÌήÂθú²Ì¤¬¸½¤ì¤ë¡£¤³¤ì¤Ï¤Þ¤µ¤Ë¥¸¥§¥Ã¥È¤Îŵ·¿Â®ÅÙ¤¬²»Â®¤òĶ¤¨¤ëÄã¦Â¥ê¥³¥Í¥¯¥·¥ç¥ó¤Ë¤âÅö¤Æ¤Ï¤Þ¤ê¡¢¹Ò¶õµ¡¤ÎÍãÌ̤˸½¤ì¤ë¾×·âÇȤ䡢¥é¥Ð¥ë¥Î¥º¥ë¤Ç¤ÎÃÇÇ®²Ã®¤È¤¤¤Ã¤¿°µ½ÌήÂθ½¾Ý¤¬¸«¤¨¤Æ¤¤¤ë¡£Æäˡ¢Ä¶²»Â®¥¸¥§¥Ã¥È¤ÎÃæ¤Ë¸½¤ì¤ë¡Ö¥·¥ç¥Ã¥¯¥À¥¤¥¢¥â¥ó¥É¡×¤È¤¤¤¦¸½¾Ý¤ËÃíÌܤ·¡¢¤½¤ÎÎ׳¦½Ð¸½¾ò·ï¤ä¡¢¶ä²Ï·Ï³°¥¸¥§¥Ã¥È¤ÎʪÍý¤È¤Î¶¦ÄÌÅÀ¡¦Áê°ãÅÀ¤òµÄÏÀ¤¹¤ë¡£
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- 11/26¡¡Æ£ËÜ·Ë»°(ÍýÏÀÉô)¡¡3D dynamics of collisionless magnetic reconnection
- Mangetic reconnection is one of the key processes which release the magnetic field energy into plasma kinetic energy and drive explosive phenomena in collisionless plasmas. A number of observations in the Earth magnetosphere, laboratory experiments, and solar flares have suggested that the reconnection process is essentially three dimensional. However, the 3D model of magnetic reconneciton was poorly established yet, in part, because of limitation of the comupter resources. The current study focuses on plasma turbulence arising around the magnetic x-line by using the K, the state-of-the-art supercomputer of Japan. We show that the electromagnetic turbulence not only gives rise to the anomalous electric resistivity, but also controls the outflow jet structure in large (MHD) scale. The 3D outflow jets may explain the bursty plasma flows observed frequently in the Earth magnetotail.