Minimal-gain-printed silicon nanolaser
Byoung Jun Park, Minwoo Kim, Kyong-Tae Park, Hwi-Min Kim, Byeong Uk You, Aran Yu, Jin Tae Kim, You-Shin No 等 9 位
Korea University Konkuk University Korea Institute of Science and Technology University of California, Berkeley
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摘要与影响
While there have been notable advancements in Si-based optical integration, achieving compact and efficient continuous-wave (CW) III-V semiconductor nanolasers on Si at room temperature remains a substantial challenge. This study presents an innovative approach: the on-demand minimal-gain-printed Si nanolaser. By using a carefully designed minimal III-V optical gain structure and a precise on-demand gain-printing technique, we achieve lasing operation with superior spectral stability under pulsed conditions and observe a strong signature of CW operation at room temperature. These achievements are attributed to addressing both fundamental and technological issues, including carrier diffusion, absorption loss, and inefficient thermal dissipation, through minimal-gain printing in the nanolaser. Moreover, our demonstration of the laser-on-waveguide structure emphasizes the integration benefits of this on-demand gain-printed Si nanolaser, highlighting its potential significance in the fields of Si photonics and photonic integrated circuits.
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工程Photonic and Optical Devices
Semiconductor Lasers and Optical Devices · Silicon Nanostructures and Photoluminescence
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