It's not every day you happen to see a dead wolf, an elephant and a horse just lying around. But then this is no ordinary location. The animals are just some of the weird and wonderful props used at a special effects...It's not every day you happen to see a dead wolf, an elephant and a horse just lying around. But then this is no ordinary location. The animals are just some of the weird and wonderful props used at a special effects makeup studio located in the Dachang Movie Town, Dachang Hui Autonomous County in Langfang City. north of China's Hebei Province.展开更多
We report the superconductivity in iron-based oxyarsenide Sm[O1-xFx]FeAs, with the onset resistivity transition temperature at 55.0K and Meissner transition at 54.6K. This compound has the same crystal structure as La...We report the superconductivity in iron-based oxyarsenide Sm[O1-xFx]FeAs, with the onset resistivity transition temperature at 55.0K and Meissner transition at 54.6K. This compound has the same crystal structure as LaOFeAs with shrunk crystal lattices, and becomes the superconductor with the highest critical temperature among all materials besides copper oxides up to now.展开更多
文摘It's not every day you happen to see a dead wolf, an elephant and a horse just lying around. But then this is no ordinary location. The animals are just some of the weird and wonderful props used at a special effects makeup studio located in the Dachang Movie Town, Dachang Hui Autonomous County in Langfang City. north of China's Hebei Province.
基金Supported by the National Natural Science Foundation of China under Grant Nos 10734120 and 50571111, and National Basic Research Program of China under Grant Nos 2006CB601001 and 2007CB925002, and the Project COMEPHS TTC from EC.
文摘We report the superconductivity in iron-based oxyarsenide Sm[O1-xFx]FeAs, with the onset resistivity transition temperature at 55.0K and Meissner transition at 54.6K. This compound has the same crystal structure as LaOFeAs with shrunk crystal lattices, and becomes the superconductor with the highest critical temperature among all materials besides copper oxides up to now.