Luo Yumeng, Yu Binlu, Yu Hongyu, Li Kwai Hei
Opt Lett. 2024 May 1;49(9):2261-2264. doi: 10.1364/OL.518090.
This Letter presents the fabrication and characterization of a chip-scale GaN optical device for measuring glycerol viscosity. The monolithically integrated GaN chip with a size of 1 × 1 mm comprises a light-emitting diode (LED) and a photodiode (PD) on a transparent sapphire substrate. The glycerol droplet applied to the device acts as a medium for coupling light from the LED to the PD. When a mechanical impulse is applied, the droplet undergoes a damped vibration that depends on its viscosity, causing a change in its shape and altering the path of light propagation. The viscosity of the glycerol sample can be determined by obtaining the rate of attenuation of the measured photocurrent signals. The proposed unit offers a fast time response in microseconds and requires only a small sample volume of 5 µl. The developed device is highly suitable for the practical measurement of glycerol viscosity due to its miniaturization, low cost, and ease of operation without the need for external optical components.
本文介绍了一种用于测量甘油粘度的芯片级氮化镓光学器件的制造与表征。尺寸为1×1 mm的单片集成氮化镓芯片包括一个发光二极管(LED)和一个位于透明蓝宝石衬底上的光电二极管(PD)。施加到该器件上的甘油液滴充当将光从LED耦合到PD的介质。当施加机械脉冲时,液滴会经历取决于其粘度的阻尼振动,导致其形状发生变化并改变光传播路径。甘油样品的粘度可以通过获取测量的光电流信号的衰减率来确定。所提出的单元在微秒级具有快速的时间响应,并且仅需要5 µl的小样品体积。由于其小型化、低成本且无需外部光学组件即可轻松操作,所开发的器件非常适合甘油粘度的实际测量。