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인용수 3
·2023
Nanoscale mapping of edge-state conductivity and charge-trap activity in topological insulators
Shashank Shekhar, Yuhyeon Oh, Jin Young Jeong, Yoon-Ji Choi, Duckhyung Cho, Seunghun Hong
IF 12.2Materials Horizons
초록

a conducting probe to directly map the charge-trap densities and conductivities with a nanoscale resolution. The results showed that edge regions had one-dimensional characteristics with higher conductivities (two orders) and lower charge-trap densities (four orders) than those of flat surface regions where their conductivities and charge-traps were dominated by bulk effects. Additionally, edges showed an enhanced conductivity with an elevated electric field, possibly due to the creation of new topological states by stronger spin-Hall effects. Importantly, we observed ultra-high photoconductivity predominantly on edge regions compared with that of flat surface regions, which was attributed to the excitation of edge-state carriers by light. Since our method provides an important insight into the charge transport in topological insulators, it could be a significant advancement in the development of error-tolerant topotronic devices.

키워드
Nanoscopic scaleTrap (plumbing)Enhanced Data Rates for GSM EvolutionCharge (physics)Topological insulatorConductivityMaterials scienceState (computer science)NanotechnologyTopology (electrical circuits)
타입
article
IF / 인용수
12.2 / 3
게재 연도
2023

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