Resonant Plasmonic Terahertz Detection in Gated Graphene p - i - n Field-Effect Structures Enabled by Nonlinearity from Zener-Klein Tunneling
Author:
Funder
RIEC
Office of Scientific Research
Promotion of Science
Publisher
American Physical Society (APS)
Subject
General Physics and Astronomy
Link
http://harvest.aps.org/v2/journals/articles/10.1103/PhysRevApplied.18.034022/fulltext
Reference65 articles.
1. Plasma wave electronics: novel terahertz devices using two dimensional electron fluid
2. Room Temperature Terahertz Plasmonic Detection by Antenna Arrays of Field-Effect Transistors
3. Emission and Detection of Terahertz Radiation Using Two-Dimensional Electrons in III–V Semiconductors and Graphene
4. Emission and detection of terahertz radiation using two-dimensional plasmons in semiconductor nanoheterostructures for nondestructive evaluations
5. Graphene field-effect transistors as room-temperature terahertz detectors
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1. Transit‐Time Instability Mechanism in Lateral Graphene n+‐i‐n‐i‐n+ Structure with Transverse Terahertz Pasmonic Resonant Cavity;physica status solidi (a);2024-04-11
2. Klein-tunneling Increases the signal modulation rate of elastic wave systems;International Journal of Mechanical Sciences;2023-09
3. Terahertz bolometric detectors based on graphene field-effect transistors with the composite h-BN/black-P/h-BN gate layers using plasmonic resonances;Journal of Applied Physics;2023-08-22
4. Self-excitation of Terahertz Plasmons in Graphene FETs Enabled by Transit-time Negative Dynamic Conductance;2023 International Conference for Advancement in Technology (ICONAT);2023-01-24
5. Transit-time resonances enabling amplification and generation of terahertz radiation in periodic graphene p-i-n structures with the Zener–Klein interband tunneling;Journal of Applied Physics;2022-11-14
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