Improved Rectification Performance and Terahertz Detection in Hybrid Structure of Self-Switching Device (SSD) and Planar Barrier Diode (PBD) Using Two-Dimensional Device Simulation
Autor: | N. F. Zakaria, Shahrir R. Kasjoo, Zarimawaty Zailan, M. Mohamad Isa, Aimin Song, M. K. Md Arshad |
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Rok vydání: | 2020 |
Předmět: |
010302 applied physics
Materials science business.industry Terahertz radiation 02 engineering and technology 021001 nanoscience & nanotechnology Condensed Matter Physics 01 natural sciences Atomic and Molecular Physics and Optics Planar Rectification 0103 physical sciences Optoelectronics General Materials Science Device simulation 0210 nano-technology business Diode |
Zdroj: | Solid State Phenomena. 301:111-117 |
ISSN: | 1662-9779 |
DOI: | 10.4028/www.scientific.net/ssp.301.111 |
Popis: | Recently, simulations of In0.48Ga0.52As-based Planar Barrier Diode (PBD) and Self-Switching Device (SSD) as millimeter-wave rectifiers were reported. Both PBD and SSD have a planar structure, but with different insulating shapes and working principles. In this work, a hybrid structure of the reported PBD and SSD in a parallel configuration is proposed, to exploit the advantages of each device. The advantages of high rectifying properties in the SSD and fast switching rate of the PBD are combined in this hybrid structure in order to obtain an improved rectification performance at zero-bias in the near terahertz frequency region. Analysis of the curvature co-efficient, γ, which is defined as the ratio of the second order to the first order derivative of the device’s I-V function was performed to evaluate the rectification performance. AC transient analyses were then executed in various frequencies to imitate the high-frequency signal inputs. By using this hybrid structure, the highest value of γ achieved has been improved to ~19 V-1at 70 mV, and ~6 V-1at zero-bias (compared to the previous results on PBDs). The estimated cut-off frequency obtained was ~360 GHz (0.36 THz), operating at zero-bias. |
Databáze: | OpenAIRE |
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