强相关材料对大电场的非线性响应

James Freericks, V. Turkowski, V. Zlatić
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引用次数: 7

摘要

强相关电子材料是电子-电子相互作用非常强的材料,它对确定材料的行为至关重要。作为化学掺杂、压力或温度的函数,这些材料可以被调谐以通过金属-绝缘体转变。这种特性的可调性使它们成为所谓的“智能材料”的良好候选者,这种材料可以根据设备的特定需求改变其特性。我们采用大规模并行算法来精确求解这些强相关材料对大电场的响应,包括所有非线性和非平衡效应。这项工作是2006年冬季在ERDC XT3计算机上进行的CAP第二期项目。代码显示出良好的可伸缩性,最多可达大约3000个处理器,尽管大多数生产运行使用大约1500个处理器,因为机器负载
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Nonlinear Response of Strongly Correlated Materials to Large Electric Fields
Strongly correlated electron materials are materials where the electron-electron interaction is so strong it is of primary importance in determining how the materials behave. These materials may be tuned to pass through a metal-insulator transition as a function of chemical doping, pressure, or temperature. This tunability of their properties makes them good candidates for so-called "smart materials" that may change their properties to respond to the particular needs of a device. We employ a massively parallel algorithm to solve exactly for the response of these strongly correlated materials to the presence of a large electric field, including all nonlinear and non-equilibrium effects. The work was performed as a CAP Phase IIproject on the ERDC XT3 computer in the Winter of 2006. The code displayed good scalability up to approximately 3000 processors although most production runs employed about 1500 processors, because of machine load
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