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Special Issue: Special Issue on Optoelectronics Dedicated to Prof. Bingkun Zhou’s 80th Birthday
Front. Optoelectron., 2016, Volume 9, Number 2.
本期邀请清华大学黄翊东教授担任客座编辑,组织专刊庆祝周炳琨先生80华诞。此次专刊包含21篇来自美国、德国、英国、日本、中国等国家前沿学者的综述和研究性论文。文章涵盖了光通讯和网络、微波光子学、光纤激光器和半导体激光器以及集成光学和纳米光子学等内容。
本期全文可在Springer平台(http://link.springer.com/journal/12200/9/2/)和HEP平台(http://journal.hep.com.cn/foe)浏览下载。
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A Special Issue on Optoelectronics Dedicated to Prof. Bingkun Zhou’s 80thBirthday Front. Optoelectron.. 2016, 9 (2): 121-122. DOI: 10.1007/s12200-016-0625-0 Figures and Tables | References | Related Articles | Metrics |
Frontier research of ultra-high-speed ultra-large-capacity and ultra-long-haul optical transmission Front. Optoelectron.. 2016, 9 (2): 123-137. DOI: 10.1007/s12200-016-0612-5 Figures and Tables | References | Related Articles | Metrics |
Subwavelength electromagnetics Front. Optoelectron.. 2016, 9 (2): 138-150. DOI: 10.1007/s12200-016-0632-1 Figures and Tables | References | Related Articles | Metrics |
Novel optoelectronic characteristics from manipulating general energy-bands by nanostructures Front. Optoelectron.. 2016, 9 (2): 151-159. DOI: 10.1007/s12200-016-0615-2 Figures and Tables | References | Related Articles | Metrics |
Recent advances in microwave photonics Front. Optoelectron.. 2016, 9 (2): 160-185. DOI: 10.1007/s12200-016-0633-0 Figures and Tables | References | Related Articles | Metrics |
Researches in microwave photonics based packages for millimeter wave system with wide bandwidth and large dynamic range Front. Optoelectron.. 2016, 9 (2): 186-193. DOI: 10.1007/s12200-016-0622-3 Figures and Tables | References | Related Articles | Metrics |
Manipulating optical vortices using integrated photonics Front. Optoelectron.. 2016, 9 (2): 194-205. DOI: 10.1007/s12200-016-0623-2 Figures and Tables | References | Related Articles | Metrics |
Review of design principles of 2D photonic crystal microcavity biosensors in silicon and their applications Front. Optoelectron.. 2016, 9 (2): 206-224. DOI: 10.1007/s12200-016-0631-2 Figures and Tables | References | Related Articles | Metrics |
Novel types of photonic band crystal high power and high brightness semiconductor lasers Front. Optoelectron.. 2016, 9 (2): 225-237. DOI: 10.1007/s12200-016-0624-1 Figures and Tables | References | Related Articles | Metrics |
Microwave photonics connected with microresonator frequency combs Front. Optoelectron.. 2016, 9 (2): 238-248. DOI: 10.1007/s12200-016-0621-4 Figures and Tables | References | Related Articles | Metrics |
Vertical-cavity surface-emitting lasers with nanostructures for optical interconnects Front. Optoelectron.. 2016, 9 (2): 249-258. DOI: 10.1007/s12200-016-0611-6 Figures and Tables | References | Related Articles | Metrics |
Progress on mid-IR graphene photonics and biochemical applications Front. Optoelectron.. 2016, 9 (2): 259-269. DOI: 10.1007/s12200-016-0618-z Figures and Tables | References | Related Articles | Metrics |
Novel applications of space-division multiplexing Front. Optoelectron.. 2016, 9 (2): 270-276. DOI: 10.1007/s12200-016-0607-2 Figures and Tables | References | Related Articles | Metrics |
Plasmonic light trapping for wavelength-scale silicon solar absorbers Front. Optoelectron.. 2016, 9 (2): 277-282. DOI: 10.1007/s12200-016-0614-3 Figures and Tables | References | Related Articles | Metrics |
Dual-periodic-microstructure-induced color tunable white organic light-emitting devices Front. Optoelectron.. 2016, 9 (2): 283-289. DOI: 10.1007/s12200-016-0617-0 Figures and Tables | References | Related Articles | Metrics |
Integrated coherent combining of angled-grating broad-area lasers Front. Optoelectron.. 2016, 9 (2): 290-300. DOI: 10.1007/s12200-016-0610-7 Figures and Tables | References | Related Articles | Metrics |
Research on multi-kilowatts level tapered fiber bundle N×1 pumping combiner for high power fiber laser Front. Optoelectron.. 2016, 9 (2): 301-305. DOI: 10.1007/s12200-016-0609-0 Figures and Tables | References | Related Articles | Metrics |
Influence of temperature and reverse bias on photocurrent spectrum and supra-bandgap spectral response of monolithic GaInP/GaAs double-junction solar cell Front. Optoelectron.. 2016, 9 (2): 306-311. DOI: 10.1007/s12200-016-0599-y Figures and Tables | References | Related Articles | Metrics |
Single crystal erbium compound nanowires as high gain material for on-chip light source applications Front. Optoelectron.. 2016, 9 (2): 312-317. DOI: 10.1007/s12200-016-0620-5 Figures and Tables | References | Related Articles | Metrics |
Size-dependent optical properties of InGaN quantum dots in GaN nanowires grown by MBE Front. Optoelectron.. 2016, 9 (2): 318-322. DOI: 10.1007/s12200-016-0613-4 Figures and Tables | References | Related Articles | Metrics |
Laser annealing of SiO2 film deposited by ICPECVD for fabrication of silicon based low loss waveguide Front. Optoelectron.. 2016, 9 (2): 323-329. DOI: 10.1007/s12200-016-0616-1 Figures and Tables | References | Related Articles | Metrics |
Simple dynamic energy core equivalent rays method to design freeform surface for extended source Front. Optoelectron.. 2016, 9 (2): 330-337. DOI: 10.1007/s12200-016-0619-y Figures and Tables | References | Related Articles | Metrics |
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