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Turning statistical physics models into materials design engines

机译:将统计物理模型转变为材料设计引擎

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摘要

Despite the success statistical physics has enjoyed at predicting the properties of materials for given parameters, the inverse problem, identifying which material parameters produce given, desired properties, is only beginning to be addressed. Recently, several methods have emerged across disciplines that draw upon optimization and simulation to create computer programs that tailor material responses to specified behaviors. However, so far the methods developed either involve black-box techniques, in which the optimizer operates without explicit knowledge of the material’s configuration space, or require carefully tuned algorithms with applicability limited to a narrow subclass of materials. Here we introduce a formalism that can generate optimizers automatically by extending statistical mechanics into the realm of design. The strength of this approach lies in its capability to transform statistical models that describe materials into optimizers to tailor them. By comparing against standard black-box optimization methods, we demonstrate how optimizers generated by this formalism can be faster and more effective, while remaining straightforward to implement. The scope of our approach includes possibilities for solving a variety of complex optimization and design problems concerning materials both in and out of equilibrium.
机译:尽管统计物理学在预测给定参数的材料特性方面取得了成功,但反问题,即确定哪些材料参数产生给定的所需特性的反问题才刚刚开始得到解决。最近,跨学科涌现了几种方法,这些方法可以利用优化和模拟来创建可对特定行为进行物质响应定制的计算机程序。但是,到目前为止,开发的方法要么涉及黑盒技术,要么使优化器在运行过程中无需明确了解材料的配置空间,要么需要仔细调整算法,将其适用性限制为狭窄的材料子类。在这里,我们介绍一种形式主义,可以通过将统计机制扩展到设计领域来自动生成优化器。这种方法的优势在于能够将描述材料的统计模型转换为优化器以进行定制。通过与标准黑匣子优化方法进行比较,我们演示了这种形式主义生成的优化器如何更快,更有效,同时又保持直接的实现。我们方法的范围包括解决各种复杂的优化和设计问题的可能性,这些问题涉及材料在非平衡状态下的平衡。

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