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Light Memory Operation Based on a Double Pin SiC Device

机译:基于双引脚SiC器件的光存储操作

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Experimental optoelectronic characterization of a p-i'(a-SiC:H)-n/p-i(a-Si:H)-n heterostructure with low conductivity doped layers shows the feasibility of tailoring channel bandwidth and wavelength by optical bias through back and front side illumination. Front background enhances light-to-dark sensitivity of the long and medium wavelength range, and strongly quenches the others. Back violet background enhances the magnitude in short wavelength range and reduces the others. Experiments have three distinct programmed time slots: control, hibernation and data. Throughout the control time slot steady light wavelengths illuminate either or both sides of the device, followed by the hibernation without any background illumination. The third time slot allows a programmable sequence of different wavelengths with an impulse frequency of 6000H_z to shine upon the sensor. Results show that the control time slot illumination has an influence on the data time slot which is used as a volatile memory with the set, reset logical functions.
机译:具有低电导率掺杂层的p-i'(a-SiC:H)-n / pi(a-Si:H)-n异质结构的实验光电特性显示了通过反向和反向光学偏置来调整通道带宽和波长的可行性正面照明。正面背景增强了长波长和中波长范围的明暗灵敏度,并强烈淬灭了其他背景。紫罗兰色背景增强了短波长范围内的幅度,并减少了其他背景。实验具有三个不同的编程时隙:控制,休眠和数据。在整个控制时隙中,稳定的光波长照亮设备的任一侧或两侧,然后进入休眠状态,而没有任何背景照明。第三个时隙允许以6000H_z的脉冲频率的不同波长的可编程序列照射到传感器上。结果表明,控制时隙照明对数据时隙有影响,该数据时隙用作具有已设置,复位逻辑功能的易失性存储器。

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