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Nanotubes and microtubules as quantum information carriers

机译:纳米管和微管作为量子信息载体

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In the foreseeable future silicon based electronics will reach limits in miniaturisation and switching speeds, imposed by fundamental physical constraints. The quest for smaller gates and higher processing speeds with the attendant increase of chip functional density will reach the point where quantum effects dominate. Alternative strategies will then be required to overcome the limitations of silicon; among the most promising are those exploiting the properties of biological molecules, notably microtubules. These have the advantages associated with carbon chemistry, including the scope for constructing large highly complex macromolecular assemblies, and share the exciting electronic properties of semi- and superconductors. Biological systems have the potential to bypass the limiting effects of single particle quantum systems through the interactions of complex molecules, necessarily based on hydrocarbon polymers.
机译:在可预见的将来,基于硅的电子产品将由于基本的物理限制而在微型化和开关速度方面达到极限。随着芯片功能密度的增加,对更小的门和更高的处理速度的追求将达到量子效应占主导地位的地步。然后将需要替代策略来克服硅的局限性;其中最有前途的是那些利用生物分子尤其是微管的特性的分子。这些具有与碳化学有关的优点,包括构造高度复杂的大型高分子组件的范围,并具有半导体和超导体的令人兴奋的电子特性。生物系统有可能通过复杂分子的相互作用绕开单粒子量子系统的局限性,而复杂分子必然基于烃聚合物。

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