论文标题

电子打开系统中的等离子阻尼

Plasmon damping in electronically open systems

论文作者

Kapralov, Kirill, Svintsov, Dmitry

论文摘要

固体中的电控制等离子间的快速进展提出了一个关于电子储层对等离子体特性的影响的问题。我们发现电子开放系统中的等离子体[即在连接到导线的(半)导体中]由于载体渗透到触点和随后的热化中,因此易于进行额外的阻尼。我们开发了一种基于动力学方程的这种铅诱导的阻尼理论,并具有自洽的电场,并在接口处得到了微观载体的传输。电子开放弹道系统中等离子体的寿命似乎是有限的,导体长度的顺序除以载体费米(热)速度。等离子体入射在半导体和完美传导金属接触的等离子体的反射损失似乎是有限的,费米速度的顺序除以波相速度。根据提出的铅诱导的阻尼现象,讨论了有关等离子辅助光进行的最新实验。

Rapid progress in electrically-controlled plasmonics in solids poses a question about effects of electronic reservoirs on the properties of plasmons. We find that plasmons in electronically open systems [i.e. in (semi)conductors connected to leads] are prone to an additional damping due to charge carrier penetration into contacts and subsequent thermalization. We develop a theory of such lead-induced damping based on kinetic equation with self-consistent electric field, supplemented by microscopic carrier transport at the interfaces. The lifetime of plasmon in electronically open ballistic system appears to be finite, order of conductor length divided by carrier Fermi (thermal) velocity. The reflection loss of plasmon incident on the contact of semi-conductor and perfectly conducting metal also appears to be finite, order of Fermi velocity divided by wave phase velocity. Recent experiments on plasmon-assisted photodetection are discussed in light of the proposed lead-induced damping phenomenon.

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