Zhang Longfei, Wang Ying, Wu Han, Hou Maoxiang, Wang Jingru, Zhang Lichao, Liao Changrui, Liu Shen, Wang Yiping
Guangdong and Hong Kong Joint Research Centre for Optical Fibre Sensors, Shenzhen University, Shenzhen 518060, China.
Nanoscale. 2019 Apr 25;11(17):8319-8326. doi: 10.1039/c9nr02040c.
The temporal response of conventional ZnO nanowire-based photodetectors suffers from the influence of carrier mobility and high electrical resistance. As a result, these devices can be prohibitively slow for some applications, generally with a response time on the order of 1 second. This study presents a novel ZnO nanowire-based microfiber coupler structure for all-optical photodetection without the demand for photocurrent generation. In this design, two waveguides are directly adsorbed by van der Waals forces or electrostatic forces. Compared with the conventional electrical bridge structure, the optical coupling architecture makes the device both compact and stable. In this configuration, resonance dips form in the transmission spectrum when the phase-matching conditions of the two waveguides are satisfied. The measurements of the resulting wavelength shift, low noise levels, and repetition time confirmed that the proposed optical device could operate as a photodetector. The device exhibits superior performance with a sensitivity of 1.657 nm (W cm-2)-1 and a response time of 0.43 ms. In addition, the detector features a simple fabrication as there is no need for extra modification of ZnO nanowires. The resulting photodetection capabilities could provide a new functionality for novel all-optical applications.
传统的基于氧化锌纳米线的光电探测器的时间响应受到载流子迁移率和高电阻的影响。因此,对于某些应用来说,这些器件可能会慢得令人望而却步,其响应时间通常在1秒左右。本研究提出了一种基于氧化锌纳米线的新型微纤维耦合器结构,用于全光探测,无需产生光电流。在这种设计中,两个波导通过范德华力或静电力直接吸附。与传统的电桥结构相比,光耦合结构使器件既紧凑又稳定。在这种配置下,当两个波导的相位匹配条件满足时,传输光谱中会形成共振凹陷。对由此产生的波长偏移、低噪声水平和重复时间的测量证实,所提出的光学器件可以用作光电探测器。该器件表现出优异的性能,灵敏度为1.657 nm(W cm-2)-1,响应时间为0.43 ms。此外,该探测器的制造简单,因为无需对氧化锌纳米线进行额外改性。由此产生的光电探测能力可为新型全光应用提供新功能。