论文标题

通过禁闭来指导自组织

Steering self-organisation through confinement

论文作者

Araújo, Nuno A. M., Janssen, Liesbeth M. C., Barois, Thomas, Boffetta, Guido, Cohen, Itai, Corbetta, Alessandro, Dauchot, Olivier, Dijkstra, Marjolein, Durham, William M., Dussutour, Audrey, Garnier, Simon, Gelderblom, Hanneke, Golestanian, Ramin, Isa, Lucio, Koenderink, Gijsje H., Löwen, Hartmut, Metzler, Ralf, Polin, Marco, Royall, C. Patrick, Šarić, Anđela, Sengupta, Anupam, Sykes, Cécile, Trianni, Vito, Tuval, Idan, Vogel, Nicolas, Yeomans, Julia M., Zuriguel, Iker, Marin, Alvaro, Volpe, Giorgio

论文摘要

自组织是从较小单位的相互作用中的时空结构和模式的自发出现。在非常不同的系统和科学学科中,从物理,材料科学和机器人技术到生物学,地球物理和天文学的许多尺度上都可以找到例子。最近的研究强调了如何通过禁闭来介导和控制自我组织。限制是通过与边界的相互作用发生的,并且可以作为自我组织的催化剂或抑制剂。然后,它可以成为积极指导在时空中集体现象的出现或抑制的一种手段。在这里,为了为未来的研究提供一个共同的框架,我们研究了监禁在自组织中的作用,并确定需要解决的学科的总体科学挑战,以利用其充分的科学和技术潜力。该框架不仅将加速对自我组织的共同深入了解,而且还会触发创新策略的发展,以通过限制和影响,例如,对更智能材料的设计,生物医学和人群管理的组织工程设计。

Self-organisation is the spontaneous emergence of spatio-temporal structures and patterns from the interaction of smaller individual units. Examples are found across many scales in very different systems and scientific disciplines, from physics, materials science and robotics to biology, geophysics and astronomy. Recent research has highlighted how self-organisation can be both mediated and controlled by confinement. Confinement occurs through interactions with boundaries, and can function as either a catalyst or inhibitor of self-organisation. It can then become a means to actively steer the emergence or suppression of collective phenomena in space and time. Here, to provide a common framework for future research, we examine the role of confinement in self-organisation and identify overarching scientific challenges across disciplines that need to be addressed to harness its full scientific and technological potential. This framework will not only accelerate the generation of a common deeper understanding of self-organisation but also trigger the development of innovative strategies to steer it through confinement, with impact, e.g., on the design of smarter materials, tissue engineering for biomedicine and crowd management.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源