首页> 外文会议>International Conference on Semiconductor Materials and Technology >Improved Rectification Performance and Terahertz Detection in Hybrid Structure of Self-Switching Device (SSD) and Planar Barrier Diode (PBD) Using Two-Dimensional Device Simulation
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Improved Rectification Performance and Terahertz Detection in Hybrid Structure of Self-Switching Device (SSD) and Planar Barrier Diode (PBD) Using Two-Dimensional Device Simulation

机译:利用二维器件仿真改进了自交换装置(SSD)和平面屏障二极管(PBD)混合结构的整流性能和太赫兹检测

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Recently, simulations of In_(0.48)Ga_(0.52)As-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, y, 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~(-1) at 70 mV, and ~6 V~(-1) at 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.
机译:最近,报道了in_(0.48)Ga_(0.52)的平面屏障二极管(PBD)和自切换装置(SSD)的模拟,作为毫米波整流器。 PBD和SSD都有平面结构,但具有不同的绝缘形状和工作原理。在这项工作中,提出了报告的PBD和SSD的混合结构,以平行配置,以利用每个设备的优点。在该混合结构中组合了SSD中的高整流性能和PBD的快速切换率的优点,以便在近太频率区域的零偏压下获得改进的整流性能。对曲率共同高效的y分析,其被定义为对设备I-V功能的第一阶导数的二阶导数的比率进行了评估,以评估整流性能。然后以各种频率执行交流瞬态分析以模拟高频信号输入。通过使用这种混合结构,实现的γ的最高值已在70mV下提高到〜19 V〜(-1),零偏压的〜6 V〜(-1)(与PBD上的先前结果相比) 。获得的估计截止频率为约360 GHz(0.36六六),在零偏压下工作。

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