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Nanoscale determination of the mass enhancement factor in the lightly doped bulk insulator lead selenide.


ABSTRACT: Bismuth chalcogenides and lead telluride/selenide alloys exhibit exceptional thermoelectric properties that could be harnessed for power generation and device applications. Since phonons play a significant role in achieving these desired properties, quantifying the interaction between phonons and electrons, which is encoded in the Eliashberg function of a material, is of immense importance. However, its precise extraction has in part been limited due to the lack of local experimental probes. Here we construct a method to directly extract the Eliashberg function using Landau level spectroscopy, and demonstrate its applicability to lightly doped thermoelectric bulk insulator PbSe. In addition to its high energy resolution only limited by thermal broadening, this novel experimental method could be used to detect variations in mass enhancement factor at the nanoscale level. This opens up a new pathway for investigating the local effects of doping and strain on the mass enhancement factor.

SUBMITTER: Zeljkovic I 

PROVIDER: S-EPMC4389230 | biostudies-other | 2015

REPOSITORIES: biostudies-other

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Nanoscale determination of the mass enhancement factor in the lightly doped bulk insulator lead selenide.

Zeljkovic Ilija I   Scipioni Kane L KL   Walkup Daniel D   Okada Yoshinori Y   Zhou Wenwen W   Sankar R R   Chang Guoqing G   Wang Yung Jui YJ   Lin Hsin H   Bansil Arun A   Chou Fangcheng F   Wang Ziqiang Z   Madhavan Vidya V  

Nature communications 20150327


Bismuth chalcogenides and lead telluride/selenide alloys exhibit exceptional thermoelectric properties that could be harnessed for power generation and device applications. Since phonons play a significant role in achieving these desired properties, quantifying the interaction between phonons and electrons, which is encoded in the Eliashberg function of a material, is of immense importance. However, its precise extraction has in part been limited due to the lack of local experimental probes. Her  ...[more]

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