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Hao-Chung Kuo

Publications and source records attributed to Hao-Chung Kuo.

3 recordsLinked to original sources

Silicon Photonic Beam Steerer Based on Metalens Focal Plane Array

Focal plane arrays (FPAs) promise robust solid-state beam steering for LiDAR and free-space optical communications. However, the need for external collimation lenses hinders chip-scale compactness. Discrete switching between FPA elements further introduces blind spots and limits the number of resolvable points, restricting applications that require continuous tracking. Here, we demonstrate a silicon photonic beam steerer based on a metalens FPA that monolithically integrates the collimation lens on-chip. Thermo-optic prisms enable continuous fine-tuning, eliminating blind spots and tripling the number of resolvable points. Continuous steering over a 62° field of view is achieved while maintaining high beam quality, with an average sidelobe suppression ratio of 19 dB.

physics.optics

High-Bandwidth 940 nm VCSEL with Zn-diffusion for Optical Communications

We present a systematic design methodology, combining simulation and experimental validation, for high-speed 940 nm vertical-cavity surface-emitting lasers (VCSELs). A comprehensive simulation study was conducted to optimize the device structure, focusing on the number of oxide layers and the aperture size, which predicted a maximum modulation bandwidth of over 35 GHz. To validate this approach, an optimized device with a 4-μm double-oxide aperture was fabricated and characterized. Crucially, during the fabrication process, a Zn-diffused region was incorporated to further enhance device performance. The experimental results demonstrate a modulation bandwidth of 34 GHz and successful 100 Gbit/s PAM-4 data transmission. The excellent agreement between the simulated and measured performance validates the effectiveness of our design meth-odology, providing a reliable framework for developing next-generation optical inter-connects.

physics.optics

Optimization of quantum well number of AlGaN/AlGaN deep-ultraviolet light-emitting diodes

In this work, performance and characteristics of AlGaN/AlGaN deep-ultraviolet light-emitting diodes (DUV LEDs) with varied number of quantum-well (QW) are investigated numerically. From our simulation, 1-QW structure give the best performance at low injection current. However, at higher injection current, 2-QWs structure give the largest power output due to its higher total radiative recombination rate and internal quantum efficiency (IQE) compared to other structures. The 2-QWs structure also has less serious efficiency droop at high current than 1-QW, which makes it an optimum structure for high-power LEDs.

physics.app-ph