Publications
Regular Papers (2012/08 ~ 2024/12)
- H. Hsu , C. H. Liu , T. C. Lin , T. H. Sang , C. M. Tsai, G. Lin, and S. D. Lin, 2024 April, “High-precision pulsed laser ranging using CMOS single-photon avalanche diodes,” Opt. Laser Technol., vol. 176, p. 110921. MOST 111-2221-E-A49-141-MY3. (SCI, EI)
- Y. Ku, C. H. Wang, M. C. Hsieh, and G. Lin*, 2023 December, “AlGaInP-Based Visible Red Photonic Crystal Surface Emitting Lasers Without Regrowth,” IEEE J. Quantum Electron., vol. 59, p. 2400706. MOST 111-2221-E-A49-177-MY3. (SCI, EI)
- T. Tsai, Y. H. Wu, C. C. Wu, S. T. Yen, G. Lin, and S. D. Lin, 2023 October, “Coupling Between Lattice and Waveguide Modes in Semiconductor Plasmonic Crystal Lasers,” J. Lightwave Technol., vol. 41, pp. 6558-6562. MOST 111-2221-E-A49-141-MY3 & MOST 111-2124-M-A49-007. (SCI, EI)
- P. H. Chen , C. H. Liu, Y. Tsou, Y. C. Fang, L. C. Ko, C. M. Tsai, T. H. Sang, G. Lin, and S. D. Lin, 2022 September, “Integration Time and Time-Bin Width in Ranging Histograms for a Photon-Counting LiDAR,” J. Lightwave Technol., vol. 40, pp. 5870-5875. MOST 110-2218-E-A49-004. (SCI, EI)
- C. Y. Kuo, Z. X. Yang, and G. Lin*, 2022 June, “Optimization of Double-Circle Photonic-Crystal Surface-Emitting Lasers,” Opt. Quantum Electron., vol. 54, p. 440. MOST 110-2218-E-A49-006. (SCI, EI)
- K. Y. Huang, Y. L. Liu, C. C. Wu, B. J. Hsiao, C. F. Shih, C. M. Tsai, G. Lin, and S. D. Lin, 2021 June, “Room-temperature two-dimensional plasmonic crystal semiconductor lasers,” Opt. Express, vol. 29, pp. 19384-19391. MOST 109-2218-E-009-020. (SCI, EI)
- Z. X. Yang, C. Y. Kuo and G. Lin*, 2021 May, “Simulation of Photonic-Crystal Surface-Emitting Lasers with Air-Hole and Air-Pillar Structures,” Photonics (MDPI), vol. 8, p. 189. MOST 109-2218-E-009-022 & MOST 110-2218-E-A49-006. (SCI, EI)
- Y. H. Huang, Z. X. Yang, S. L. Cheng, C. H. Lin, G. Lin*, K. W. Sun, and C. P. Lee, 2021 April, “Effect of Hole Shift on Threshold Characteristics of GaSb-Based Double-Hole Photonic-Crystal Surface-Emitting Lasers,” Micromachines, vol. 12, p. 468. MOST 109-2218-E-009-022 & MOST 106-2221-E-009-121-MY3. (SCI, EI)
- L. Sun, P. H. Hsieh and G. Lin*, 2019 May, “Digitally Chirped Multilayer Quantum Dot Lasers with Dual-Wavelength Lasing Emissions,” Appl. Sci., vol. 9, p. 2246. MOST 107-2218-E-009-034 & MOST 108-2218-E-009-017. (SCI)
- Z. L. Li, S. C. Lin, G. Lin*, H. W. Cheng, K. W. Sun and C. P. Lee, 2019 March, “Effect of Etching Depth on Threshold Characteristics of GaSb-Based Middle Infrared Photonic-Crystal Surface-Emitting Lasers,” Micromachines, vol. 10, p. 188. MOST 106-2221-E-009-121-MY3 & MOST 107-2218-E-009-034. (SCI, EI)
- Y. C. Chen, P. H. Hsieh, and G. Lin*, 2019 January, “Chirped multilayer quantum-dot mode-locked lasers with dual-wavelength and ground-state lasing emissions,” J. Nanophotonics, vol. 13, p. 016001. MOST 107-2218-E-009-034 (SCI, EI)
- Z. L. Li, Y. C. Kang, G. Lin*, and C. P. Lee, 2018 October, “Mid-Infrared Photonic-Crystal Surface-Emitting Lasers with InGaAs/GaAsSb ‘W’-Type Quantum Wells Grown on InP Substrate,” Photonics, vol. 5, p. 32. MOST 106-2221-E-009-121-MY3 and MOST 107-2218-E-009-034.
- M. Y. Hsu and G. Lin*, 2018 September, “Quantum-Dot Photonic-Crystal Surface-Emitting Lasers with Bottom Distributed Bragg Reflector,” Photonics, vol. 5, p. 27. MOST 105-2221-E-009-145 & MOST 107-2218-E-009-034.
- M. Y. Hsu, G. Lin*, Z. L. Li, and P. C. Pan, 2018 April, “Threshold current temperature dependence of quantum-dot photonic crystal surface-emitting lasers with respect to gain-cavity detuning,” Opt. Express, vol. 26, pp. 13483-13488. MOST 106-2221-E-009-153 (SCI, EI)
- M. Y. Hsu, G. Lin*, and C. H. Pan, 2017 December, “Electrically injected 1.3-μm quantum-dot photonic-crystal surface-emitting lasers,” Opt. Express, vol. 25, pp. 32697-32704. MOST 105-2221-E-009-145 and 106-2221-E-009-153 (SCI, EI)
- T. S. Chen, Z. L. Li, M. Y. Hsu, G. Lin*, and S. D. Lin, 2017 October, “Photonic crystal surface emitting lasers with quantum dot active region,” J. Lightwave Technol., vol. 35, pp. 4547-4552. MOST 105-2221-E-009-145. (SCI, EI)
- T. Y. Chang, C. H. Pan, K. B. Hong, C. H. Lin, G. Lin, C. P. Lee and T. C. Lu, 2016 August, “Quantum-Dot Surface Emitting Distributed Feedback Lasers Using Indium-Tin-Oxide as Top Claddings,” Photon. Technol. Lett., vol. 28, pp. 1633-1636. NSC 103-2221-E-009-005 and 103-2622-E-009-020-CC3 (SCI, EI)
- C. H. Chang, Z. L. Li, H. T. Lu, C. H. Pan, C. P. Lee, G. Lin, and S. D. Lin, 2015 February, “Low-Threshold Short-Wavelength Infrared InGaAs/GaAsSb ‘W’-Type QW Laser on InP Substrate,” Photon. Technol. Lett., vol. 27, pp. 225-228. (SCI, EI)
- H. C. Cheng, Q. Y. Wu, C. H. Pan, C. P. Lee, and G. Lin, 2013 November, “Low repetition rate and broad frequency tuning from a grating-coupled passively mode-locked quantum dot laser,” Appl. Phys. Lett., vol. 103, pp. 211109. NSC 102-2221-E-009-093. (SCI, EI)
- P. C. Peng, H. Y. Wang, R. L. Lan, H. H. Lu, G. R. Lin, G. Lin, and J. Y. Chi, 2012 September, “Wavelength Switching Based on Quantum-Dot Vertical-Cavity Surface-Emitting Laser,” Laser Phys., vol. 22, pp. 1373-1377. NSC 98-2221-E-027-007-MY3. (SCI, EI)
Conference Papers (2012/08 ~ 2024/12)
- C. Tsai, H. Dung, T. H. Do, C. C. Wu, G. Lin and S. D. Lin, 2024 November, “First electrically-driven plasmonic crystal laser,” International Workshop on PCSELs, Univ. Aston, Birmingham, UK.
- Y. Wu, S. E. Li, G. Lin, S. F. Kuo, R. Chang, and S. C. Lee, 2024 September, “Backside-Emitted Photonic-Crystal Surface-Emitting Lasers without Regrowth or Indium-Tin-Oxide,” International Semiconductor Laser Conference (ISLC 2024), paper ME2, Orlando, Florida, USA.
- Tsai, Y. J. Xie, and G. Lin*, 2024 August, “Violet Photonic-Crystal Surface-Emitting Lasers without Regrowth,” International Electron Devices and Materials Symposium (IEDMS 2024), Taichung, Taiwan.
- T. Y. Ku, C. H. Wang, and G. Lin*, 2023 January, “Photonic-crystal surface-emitting lasers in red wavelength range,” SPIE Photonics West, San Francisco, California, United States.
- A. T. Hsiao, C. H. Liu, P. H. Chen, Y. L. Liu, W. C. Wang, T. H. Sang, C. M. Tsai, G. Lin, J. I. Guo, and S. D. Lin, 2022 August, “Real-time LiDAR module with 64×128-pixel CMOS SPAD array and 940-nm PCSEL,” IEEE Sensors Applications Symposium (SAS 2022), Sundsvall, Sweden.
- P. Chen, C. Liu, A. Hsiao, Y. Tsou, Y. Fang, L. Ko, H. Tsai, C. Tsai, T. Sang, G. Lin, J. Guo, B. Hsiao, and S. Lin, 2022 May, “Minimum ranging time for a LiDAR module using CMOS single-photon avalanche diodes,” Conference on Lasers and Electro-Optics (CLEO 2022), paper JW3A.13, San Jose, California, United States.
- C. Y. Kuo, Z. X. Yang, and G. Lin*, 2021 September, “Optimization of Double-Circular-Hole Photonic-Crystal Surface-Emitting Lasers,” Numerical Simulation of Optoelectronic Devices (NUSOD 2021), Politecnico di Torino, Italy (Online).
- Y. Tsou, S. Y. Tu, Y. C. Chen, and G. Lin*, 2021 May, “Short-Pulse Characteristics of Photonic-Crystal Surface-Emitting Lasers with Indium-Tin-Oxide Deposition,” Compound Semiconductor Week (CSW 2021), Stockholm, Sweden (Online).
- K. Y. Huang, C. C. Wu, G. Lin, and S. D. Lin*, 2020 May, “Two-dimensional Plasmonic Crystal Surface Emitting Lasers with Gain Medium of InGaAs/GaAs Quantum Wells,” Conference on Lasers and Electro-Optics (CLEO 2020), San Jose, California, USA.
- Y. H. Huang, S. L. Cheng*, G. Lin, S. D. Lin, and K. W. Sun, 2020 May, “Effect of Double-Lattice Pitch in Type-I Quantum Well Mid-Infrared Photonic-crystal Surface-Emitting Lasers,” Conference on Lasers and Electro-Optics (CLEO 2020), San Jose, California, USA.
- Z. L. Li, S. C. Lin, Y. C. Chen, and G. Lin*, 2019 December, “Relationship between Threshold Gain and Bragg Detuning in Photonic-Crystal Surface-Emitting Lasers,” The Australian and New Zealand Conferences on Optics and Photonics (ANZCOP 2019), Melbourne, Australia.
- Y. S. Yeh, Y. Tsou, H. C. Chang, and G. Lin*, 2019 October, “Gain-Switched Laser Diodes with Asymmetric Waveguide Design,” International Electron Devices and Materials Symposium (IEDMS 2019), New Taipei City, Taiwan.
- P. H. Hsieh, Y. C. Chen, M. Skakun and G. Lin*, 2018 November, “Dual-wavelength Mode-locked Quantum Dot Lasers,” International Electron Devices and Materials Symposium (IEDMS 2018), Keelung, Taiwan.
- M. Y. Hsu, G. Lin*, P. C. pan, and Y. C. Chen, 2018 September, “Continuous-Wave Lasing of 1.3-μm Quantum-Dot Photonic-Crystal Surface-Emitting Lasers,” International Semiconductor Laser Conference (ISLC 2018), Santa Fe, New Mexico, USA.
- M. Y. Hsu, G. Lin*, Y. C. Chen, and C. H. Pan, 2018 May, “Temperature Dependence of Electrically Injected Quantum-Dot Photonic-Crystal Surface-Emitting Lasers,” Conference on Lasers and Electro-Optics (CLEO 2018), California, USA.
- M. Y. Hsu and G. Lin*, 2017 September, “Quantum-Dot Photonic-Crystal Surface-Emitting Lasers with Bottom Distributed Bragg Reflector,” International Electron Devices and Materials Symposium (IEDMS 2017)
- T. S. Chen, Z. L. Li, M. Y. Hsu, G. Lin*, and S. D. Lin, 2017 July, “Photonic Crystal Surface Emitting Lasers with InAs/InGaAs/GaAs Quantum Dots,” Conference on Lasers and Electro-Optics Pacific Rim / OptoElectronics and Communications Conference / Photonics Global Conference (CLEO-PR/OECC/PGC 2017), Singapore.
- T. F. Yen, C. T. Lin, G. Lin*, and S. T. Lin, 2016 November, “Optimum Cavity Length of High Power 915-nm Diode Lasers,” International Electron Devices and Materials Symposium (IEDMS 2016).
- T. S. Cheng, T. L. Lee, M. Y. Hsu, G. Lin*, and S. D. Lin, 2016 November, “Quantum-Dot Photonic Crystal Surface Emitting Lasers,” International Electron Devices and Materials Symposia (IEDMS 2016).
- K. B Hong, T. Y. Chang, C. H. Pan, C. H. Lin, G. Lin, C. P. Lee and T. C. Lu, 2016 September, “Electrically pumped quantum dot surface emitting lasers with Bragg grating capped by ITO cladding layers,” International Semiconductor Laser Conference (ISLC 2016), Kobe, Japan.
- C. P. Chiang, G. Lin*, Y. C. Chen and H. C. Cheng, 2016 August, “Dual-wavelength mode-locking of novel chirped multilayer quantum-dot lasers,” SPIE Optics+Photonics 2016.
- Y. C. Chen and G. Lin*, 2015 September, “Reliability of High Power Semiconductor Lasers on Bonding and Mounting Design,” Optoelectronics Global Conference (OGC 2015), Shenzhen, China.
- C. H. Pai and G. Lin*, 2013 April, “Tunable multiwavelength quantum dot external-cavity lasers,” SPIE European Conference on Optics and Optoelectronics, Prague, Czech Republic.
- C. H. Pai, G. Lin*, H. C. Cheng, and Y. C. Chen, 2012 November, “Continuous Tuning of Dual-wavelength Quantum-Dot External Cavity Laser for Tunable Terahertz Generation,” International Electron Devices and Materials Symposia (IEDMS 2012), Kaohsiung, Taiwan.
Patents (2018/06~2024/12)
- Y. C. Chen, C. H. Lin, B. T. Chou, C. Y. Weng, and K. J. Lin (G. Lin), “Laser device and method of manufacturing the same”, US 12068575 (@ Aug. 2024).
- 林建宏、林國瑞、周柏存、翁志源、陳俞諶,『光子晶體面射型雷射』,TW I830021 (@ Jan. 2024),TW M627153 (@ May 2022)。
- 李建平、林國瑞、林建宏、周柏存,『面射型雷射器』,TW M631350 (@ Sept. 2022)。
- K. J. Lin (G. Lin*) and Y. C. Chen, “倒晶式之電激發光子晶體面射型雷射元件,” CN 112117637 (@ Mar. 2024), US 10840673 (@ Nov. 2020), TW M603189 (@ Oct. 2020).
- K. J. Lin (G. Lin*) and Y. C. Chen, “具有檢光結構之電激發光子晶體面射型雷射元件,” US 11139636 (@ Oct. 2021), CN 112260061 (@ Sept. 2021), TW M588387 (@ Dec. 2019).
- K. J. Lin (G. Lin*), M. Y. Hsu, and Y. C. Chen, “電激發光子晶體面射型雷射元件,” CN 110535033 (@ May 2021), US 10340659 (@ Jul. 2019), TW M569067 (@ Oct. 2018).