Optically-controlled resistive switching effects of CdS nanowire memtransistor

来源 :中国物理B(英文版) | 被引量 : 0次 | 上传用户:tsmcxuesheng
下载到本地 , 更方便阅读
声明 : 本文档内容版权归属内容提供方 , 如果您对本文有版权争议 , 可与客服联系进行内容授权或下架
论文部分内容阅读
Since it was proposed,memtransistors have been a leading candidate with powerful capabilities in the field of neural morphological networks.A memtransistor is an emerging structure combining the concepts ofa memristor and a field-effect transistor with low-dimensional materials,so that both optical excitation and electrical stimuli can be used to modulate the memristive characteristics,which make it a promising multi-terminal hybrid device for synaptic structures.In this paper,a single CdS nanowire memtransistor has been constructed by the micromechanical exfoliation and alignment lithography methods.It is found that the CdS memtransistor has good non-volatile bipolar memristive characteristics,and the corre-sponding switching ratio is as high as 106 in the dark.While under illumination,the behavior of the CdS memtransistor is similar to that of a transistor or a memristor depending on the incident wavelengths,and the memristive switching ratio varies in the range of 10 to 105 with the increase of the incident wavelength in the visible light range.In addition,the optical power is also found to affect the memristive characteristics of the device.All of these can be attributed to the modulation of the potential barrier by abundant surface states of nanowires and the illumination influences on the carrier concentrations in nanowires.
其他文献
A biological sensing structure with a high-order mode (Ey21) is designed,which is composed of a suspended race-track micro-resonator (SRTMR) and a microfluidic channel.The mode characteristics,coupling properties,and sensing performances are simulated by
The broadband metamaterial perfect absorber has been extensively studied due to its excellent characteristics and promising application prospect.In this work a solar broadband metamaterial perfect absorber is proposed based on the structure of the germani
The determination of band offsets is crucial in the optimization of Ga2O3-based devices,since the band alignment types could determine the operations of devices due to the restriction of carrier transport across the heterogeneous interfaces.In this work,t
This study proposes a bi-layer windmill-shaped metamaterial that consists of resonators,with similar shapes,on both sides of a dielectric substrate.In this study,the second layer is rotated clockwise around the substrate normal at 90°and thereafter flippe
An ultra-longer tiber cantilever taper for simultaneous measurement of the temperature and relative humidity (RH)with high sensitivities was proposed.The structure was fabricated by using the simple and cost-effective method only including fiber cleaving,
The phonon dispersion relations of crystalline solids play an important role in determining the mechanical and thermal properties of materials.The phonon dispersion relation,as well as the vibrational density of states,is also often used as an indicator o
An efficient scheme for generating ultrabright γ-rays from the interaction of an intense laser pulse with a near-critical-density plasma is studied by using the two-dimensional particle-in-cell simulation including quantum electrodynamic ef-fects.We inves
Plasma density and temperature can be diagnosed by x-ray line emission measurement with crystal,and bent crystals such as von Hamos and Hall structures are proposed to improve the diffraction brightness.In this study,a straightforward solution for the foc
Accelerating beams have been the subject of extensive research in the last few decades because of their self-acceleration and diffraction-free propagation over several Rayleigh lengths.Here,we investigate the propagation dynamics of a Fresnel diffraction