한상윤
Han, SangyoonDepartment of Robotics and Mechatronics Engineering
학력
- 2010 ~ 2016U. C. Berkeley 박사
- 2010 ~ 2014U. C. Berkeley 석사
- 2006 ~ 2010서울대학교 학사
경력
- 2016 ~ 2020한국과학기술원 / 연수연구원
수상실적
연구실 소개
- Intelligent Nanophotonics Lab
-
We are a research group in Robotics Engineering Department at DGIST. Our research covers areas in nanophotonic devices, photonic integrated circuits, optical neural networks, LiDAR, and mid-IR photonics. These research areas are revolutionizing data centers, high-performance computing, artificial intelligence, ubiquitous sensor networks, and self-driving cars. We are actively hiring new graduate students, undergraduates, and research interns. Please do not hesitate to send email to Prof. Sangyoon Han if you are interested in joining our group! (You are also welcome to drop by Prof. Han's office any time.)Research Area - Photonic integrated circuits for next-generation computing (optical neural network, data centers, hyper-scale computing) - LiDAR on photonic integrated circuits - Nanophotonic mid-IR lasers for molecular sensing
Related Keyword
- "MEMS Actuators for Tunable Waveguide Devices in Photonic Integrated Circuits: A Brief Review", Choi, Dongju. (2025-06). MEMS Actuators for Tunable Waveguide Devices in Photonic Integrated Circuits: A Brief Review. Current Optics and Photonics, 9(3), 185–195. doi: 10.3807/COPP.2025.9.3.185
- "MEMS 기반 필드 프로그래머블 포토닉 게이트 어레이(FPPGA)의 파라미터 최적화를 위한 시뮬레이션 도구 개발", 엄석찬. (2025-02). MEMS 기반 필드 프로그래머블 포토닉 게이트 어레이(FPPGA)의 파라미터 최적화를 위한 시뮬레이션 도구 개발. 한국인터넷방송통신학회 논문지, 25(1), 133–143. doi: 10.7236/JIIBC.2025.25.1.133
- "Vialess heterogeneous skin patch for multimodal monitoring and stimulation", Lee, Hyeokjun. (2025-01). Vialess heterogeneous skin patch for multimodal monitoring and stimulation. Nature Communications, 16(1). doi: 10.1038/s41467-025-55951-6
- "Fully tunable Fabry-Pérot cavity based on MEMS Sagnac loop reflector with ultra-low static power consumption", Park, Young Jae. (2024-08). Fully tunable Fabry-Pérot cavity based on MEMS Sagnac loop reflector with ultra-low static power consumption. Microsystems & Nanoengineering, 10(1). doi: 10.1038/s41378-024-00728-y
- "Controlling Four-Wave Mixing through Full Tunability of MEMS-Based Photonic Molecules", Lim, Min Gi. (2024-07). Controlling Four-Wave Mixing through Full Tunability of MEMS-Based Photonic Molecules. ACS Photonics, 11(9), 3502–3510. doi: 10.1021/acsphotonics.3c01814
- "Silicon Photonics MEMS Platform-based Optomechanical Ultrasound Sensor Array for 3D Photoacoustic Deep Brain Region Imaging", Nam, Sangwoo. (2024-04-08). Silicon Photonics MEMS Platform-based Optomechanical Ultrasound Sensor Array for 3D Photoacoustic Deep Brain Region Imaging. Microscopy Histopathology and Analytics, Microscopy 2024 - Part of Optica Biophotonics Congress: Biomedical Optics, 1–2. doi: 10.1364/TRANSLATIONAL.2024.JM4A.3
- "The Manipulation of Four-Wave Mixing in a Fully Tunable MEMS Photonic Molecule", Lim, Min Gi. (2023-10-09). The Manipulation of Four-Wave Mixing in a Fully Tunable MEMS Photonic Molecule. Frontiers in Optics + Laser Science 2023, FiO, LS 203: Part of Frontiers in Optics + Laser Science 2023, 1–2. doi: 10.1364/FIO.2023.FTh1E.3
- "High-Extinction Reconfigurable Mach-Zehnder Interferometer Based on Silicon Photonic MEMS", Kim, Dong Uk. (2023-06-28). High-Extinction Reconfigurable Mach-Zehnder Interferometer Based on Silicon Photonic MEMS. Conference on Lasers and Electro-Optics Europe & European Quantum Electronics Conference, CLEO/Europe - EQEC 2023, 1–1. doi: 10.1109/CLEO/EUROPE-EQEC57999.2023.10231889
- "Fully Tunable Fabry-Perot Cavity on Silicon Photonic MEMS with 10 nW Static Power Consumption", Park, Young Jae. (2023-05-09). Fully Tunable Fabry-Perot Cavity on Silicon Photonic MEMS with 10 nW Static Power Consumption. Conference on Lasers and Electro-Optics, CLEO 2023, 1–2. doi: 10.1364/CLEO_SI.2023.STu3J.2
- "Silicon photonic MEMS for programmable photonics", Han, Sangyoon. (2022-09-22). Silicon photonic MEMS for programmable photonics. European Conference on Optical Communication, ECOC 2022.
연구 뉴스
- Comprehensive Health Monitoring and Treatment in One Unit —From Health Monitoring to Drug Delivery: The Development of a Versatile Smart Patch— 2025-02-18
- 한 번에 건강 확인·치료! 건강 모니터링부터 약물 전달까지, 만능 스마트 패치 개발 2025-01-22
- Lighting the way to advances in supercomputing 2024-02-01
- DGIST - KAIST 공동 연구팀, 빛으로 동작하는 신개념 광-GPU 개발! 2024-01-09
- 빛으로 구현하는 극초고속 계산 기계 2022-03-10
연구분야
미래유망 신기술(6T)
-
10000. IT(정보기술)
-
10100. 핵심부품
10112. 집적회로기술
-
-
10000. IT(정보기술)
-
10100. 핵심부품
10115. 기타 정보통신 부품기술
-
-
10000. IT(정보기술)
-
10200. 차세대 네트워크 기반
10212. 대용량 광전송 시스템기술
-
-
10000. IT(정보기술)
-
10400. 기타 정보기술
10411. 기타 정보기술
-
-
30000. ST(우주항공기술)
-
30100. 나노소자 및 시스템
30114. 나노 photonics기술
-
국가과학기술표준분류
-
ED. 전기/전자
-
ED01. 광응용기기
ED0108. 광소자
-
-
ED. 전기/전자
-
ED04. 반도체 소자·회로
ED0401. Si 소자
-
-
ED. 전기/전자
-
ED01. 광응용기기
ED0101. 레이저 관련부품/발생장치
-
-
ED. 전기/전자
-
ED01. 광응용기기
ED0104. 광계측/제어기기
-
-
ED. 전기/전자
-
ED01. 광응용기기
ED0107. 광부품
-
-
ED. 전기/전자
-
ED01. 광응용기기
ED0199. 달리 분류되지 않는 광응용기기
-
-
ED. 전기/전자
-
ED04. 반도체 소자·회로
ED0403. MEMS 소자
-
-
ED. 전기/전자
-
ED04. 반도체 소자·회로
ED0404. Sensor용 소자
-
-
ED. 전기/전자
-
ED04. 반도체 소자·회로
ED0499. 달리 분류되지 않는 반도체 소자·회로
-
-
ED. 전기/전자
-
ED05. 전기전자부품
ED0501. 센서부품
-
-
ED. 전기/전자
-
ED05. 전기전자부품
ED0599. 달리 분류되지 않는 전기전자부품
-
-
NB. 물리학
-
NB05. 광학·양자전자학
NB0502. 양자광학
-
12대 국가전략기술 분야
-
반도체·디스플레이
고성능·저전력 인공지능 반도체