A monolithic integrated ultraviolet-infrared(UV-IR) dual-color photodetector based on graphene/GaN heterojunction was fabricated by vertically integrating a GaN nanowire array on a silicon substrate with monolayer gra...A monolithic integrated ultraviolet-infrared(UV-IR) dual-color photodetector based on graphene/GaN heterojunction was fabricated by vertically integrating a GaN nanowire array on a silicon substrate with monolayer graphene. The device detects UV and IR lights by different mechanisms. The UV detection is accomplished by the forbidden band absorption of GaN, and the IR detection is realized by the free electron absorption of graphene. At peak wavelengths of 360 nm and 1540 nm, the detector has responsivities up to 6.93 A/W and 0.11 A/W, detection efficiencies of 1.23 × 1012 cm·Hz1/2·W-1 and 1.88 × 1010 cm·Hz1/2·W-1, respectively,and a short response time of less than 3 ms.展开更多
Design, fabrication and characterization of a novel two-color detector for ultraviolet and infrared applications are reported. The detector has a simple multilayer structure composed of n-Al0.3Ga0.7N/i-GaN/p- GaN/SiO2...Design, fabrication and characterization of a novel two-color detector for ultraviolet and infrared applications are reported. The detector has a simple multilayer structure composed of n-Al0.3Ga0.7N/i-GaN/p- GaN/SiO2/LaNiO3/PZT/Pt fabricated on a sapphire substrate. Ultraviolet and infrared properties are measured. For the ultraviolet region, a flat band spectral response is achieved in the 302-363 nm band. The detector displays an unbiased responsivity of 0.064 A/W at 355 nm. The current-voltage curve shows that current at zero bias is -1.57 × 10^-12 A. This led to a detectivity of 1.81 × 10^11 cm- Hzl/2/W. In the infrared region, the detectivity of the detector is 1.58 × 10^5 cm. Hz1/2/W at 4μm.展开更多
An ultraviolet-infrared dual-color detector is proposed and realized based on the vertical integration of single-layer graphene and a 4 H-SiC layer by semiconductor micro-fabrication technology. The spectral response ...An ultraviolet-infrared dual-color detector is proposed and realized based on the vertical integration of single-layer graphene and a 4 H-SiC layer by semiconductor micro-fabrication technology. The spectral response characteristics of the detector are analyzed. The ultraviolet response range is 208—356 nm with a responsivity larger than 0.4 mA/W and the infrared response range is 1.016—1.17 μm with a responsivity larger than 0.4 mA/W at room temperature and 5 V bias voltage. The peak responsivity of the graphene in the ultraviolet-C band at 232 nm is 0.73 mA/W and in the near infrared band at 1.148 μm is 0.64 mA/W. The peak responsivity of SiC layer in the ultraviolet-B band at 312 nm is 2.27 mA/W. Besides, the responsivity increases with the bias voltage.展开更多
通过MOCVD和CVD生长技术,利用高Al组分Al Ga N和单层石墨烯材料进行纵向集成,成功制备了日盲紫外-近红外双色探测器。在工作温度为室温、调制频率为209 Hz以及工作电压分别为10 V和5 V的工作条件下,所制备的双色探测器在紫外波段263 nm...通过MOCVD和CVD生长技术,利用高Al组分Al Ga N和单层石墨烯材料进行纵向集成,成功制备了日盲紫外-近红外双色探测器。在工作温度为室温、调制频率为209 Hz以及工作电压分别为10 V和5 V的工作条件下,所制备的双色探测器在紫外波段263 nm处的响应度为5.9 m A/W,在近红外波段1.15μm处的响应度为0.67 m A/W,并且探测器的响应度均随着工作电压的增加而增大。展开更多
基金supported by the National Natural Science Foundation of China (Nos. 61574161 and 61574130)the Natural Science Foundation of Jiangsu Province,China (No. BK20180252)the Department of Science and Technology of Jilin Province,China(No. 20180520177JH)。
文摘A monolithic integrated ultraviolet-infrared(UV-IR) dual-color photodetector based on graphene/GaN heterojunction was fabricated by vertically integrating a GaN nanowire array on a silicon substrate with monolayer graphene. The device detects UV and IR lights by different mechanisms. The UV detection is accomplished by the forbidden band absorption of GaN, and the IR detection is realized by the free electron absorption of graphene. At peak wavelengths of 360 nm and 1540 nm, the detector has responsivities up to 6.93 A/W and 0.11 A/W, detection efficiencies of 1.23 × 1012 cm·Hz1/2·W-1 and 1.88 × 1010 cm·Hz1/2·W-1, respectively,and a short response time of less than 3 ms.
基金Project supported by the National Natural Science Foundation of China(No.60807037)
文摘Design, fabrication and characterization of a novel two-color detector for ultraviolet and infrared applications are reported. The detector has a simple multilayer structure composed of n-Al0.3Ga0.7N/i-GaN/p- GaN/SiO2/LaNiO3/PZT/Pt fabricated on a sapphire substrate. Ultraviolet and infrared properties are measured. For the ultraviolet region, a flat band spectral response is achieved in the 302-363 nm band. The detector displays an unbiased responsivity of 0.064 A/W at 355 nm. The current-voltage curve shows that current at zero bias is -1.57 × 10^-12 A. This led to a detectivity of 1.81 × 10^11 cm- Hzl/2/W. In the infrared region, the detectivity of the detector is 1.58 × 10^5 cm. Hz1/2/W at 4μm.
基金supported by the National Natural Science Foundation of China(No.61804166)
文摘An ultraviolet-infrared dual-color detector is proposed and realized based on the vertical integration of single-layer graphene and a 4 H-SiC layer by semiconductor micro-fabrication technology. The spectral response characteristics of the detector are analyzed. The ultraviolet response range is 208—356 nm with a responsivity larger than 0.4 mA/W and the infrared response range is 1.016—1.17 μm with a responsivity larger than 0.4 mA/W at room temperature and 5 V bias voltage. The peak responsivity of the graphene in the ultraviolet-C band at 232 nm is 0.73 mA/W and in the near infrared band at 1.148 μm is 0.64 mA/W. The peak responsivity of SiC layer in the ultraviolet-B band at 312 nm is 2.27 mA/W. Besides, the responsivity increases with the bias voltage.
文摘通过MOCVD和CVD生长技术,利用高Al组分Al Ga N和单层石墨烯材料进行纵向集成,成功制备了日盲紫外-近红外双色探测器。在工作温度为室温、调制频率为209 Hz以及工作电压分别为10 V和5 V的工作条件下,所制备的双色探测器在紫外波段263 nm处的响应度为5.9 m A/W,在近红外波段1.15μm处的响应度为0.67 m A/W,并且探测器的响应度均随着工作电压的增加而增大。