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The evolution of semiconductor superlattices and quantum nanostructures

机译:半导体超晶格和量子纳米结构的演变

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摘要

In the early twentieth century, encounters with physical phenomena which require detailed analyses in nanoscale, such as electron motion, prompted the advent of quantum mechanics, since Newtonian mechanics could not possibly provide an adequate explanation for them. Electron tunnelling through nanoscale barriers is the most direct consequence of the law of quantum mechanics, for which the Esaki tunnel diode gave most convincing experimental evidence in 1957. Following the evolutionary path of quantum nanostructures, significant milestones are presented, including the birth of semiconductor superlattices, resonant tunnel diodes, quantum wires and dots.
机译:在二十世纪初期,由于物理现象的发生,需要对纳米级进行详细的分析,例如电子运动,促使量子力学的出现,因为牛顿力学无法为它们提供充分的解释。电子穿过纳米级势垒的隧穿是量子力学定律的最直接结果,为此,Esaki隧道二极管在1957年提供了最令人信服的实验证据。遵循量子纳米结构的演化路径,提出了重要的里程碑,包括半导体超晶格的诞生。 ,谐振隧道二极管,量子线和点。

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