Ray T. Chen spends much of his time researching Optics, Optoelectronics, Photonic crystal, Silicon and Waveguide. Silicon photonics, Grating, Photonic integrated circuit, Waveguide and Wavelength are among the areas of Optics where the researcher is concentrating his efforts. His Optoelectronics research incorporates elements of Optical modulator and Cladding.
His work on Slow light as part of his general Photonic crystal study is frequently connected to Coupling, thereby bridging the divide between different branches of science. Ray T. Chen combines subjects such as Photodetector, CMOS, Resonator and Biosensor with his study of Silicon. His research integrates issues of Guided wave testing, Printed circuit board, Multi-mode optical fiber and Modulation in his study of Waveguide.
His primary areas of investigation include Optics, Optoelectronics, Photonic crystal, Photonics and Silicon. His study in Optics focuses on Waveguide, Waveguide, Wavelength, Grating and Holography. The Waveguide study combines topics in areas such as Refractive index, Insertion loss and Optical switch.
His work deals with themes such as Laser, Polymer and Modulation, which intersect with Optoelectronics. His studies in Photonic crystal integrate themes in fields like Absorption spectroscopy, Slot-waveguide and Biosensor. His biological study spans a wide range of topics, including Phased array and Electronic engineering.
His scientific interests lie mostly in Optoelectronics, Photonics, Optics, Silicon photonics and Grating. His Photonic crystal, Resonator, Silicon, Waveguide and Plasmon study are his primary interests in Optoelectronics. His research in Photonics tackles topics such as Electronic engineering which are related to areas like Wavelength-division multiplexing, Power consumption and Electronics.
A large part of his Optics studies is devoted to Slot-waveguide. The various areas that Ray T. Chen examines in his Silicon photonics study include Silicon on insulator, Optical modulator and Bandwidth. As a part of the same scientific family, Ray T. Chen mostly works in the field of Grating, focusing on Waveguide and, on occasion, Cladding and Terahertz radiation.
Ray T. Chen mainly investigates Optoelectronics, Photonics, Optics, Silicon photonics and Electronic engineering. His Optoelectronics study combines topics in areas such as Optical modulator and Modulation. His study in Photonics is interdisciplinary in nature, drawing from both Nanotechnology, Electronic component, Integrated circuit, Extinction ratio and Insertion loss.
Ray T. Chen specializes in Optics, namely Bandwidth. Ray T. Chen works mostly in the field of Silicon photonics, limiting it down to concerns involving Refractive index and, occasionally, Transparent conducting film. Ray T. Chen has researched Electronic engineering in several fields, including Photonic integrated circuit, Electronic circuit and Wavelength-division multiplexing.
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80-micron interaction length silicon photonic crystal waveguide modulator
Yongqiang Jiang;Wei Jiang;Lanlan Gu;Xiaonan Chen.
Applied Physics Letters (2005)
Fully embedded board-level guided-wave optoelectronic interconnects
R.T. Chen;Lei Lin;Chulchae Choi;Y.J. Liu.
Proceedings of the IEEE (2000)
Thermo-optically tuned cascaded polymer waveguide taps
John M. Taboada;Jeffery J. Maki;Suning Tang;Lin Sun.
Applied Physics Letters (1999)
Recent advances in silicon-based passive and active optical interconnects
Harish Subbaraman;Xiaochuan Xu;Amir Hosseini;Xingyu Zhang.
Optics Express (2015)
Flexible optical waveguide film fabrications and optoelectronic devices integration for fully embedded board-level optical interconnects
C. Choi;L. Lin;Yujie Liu;Jinho Choi.
Journal of Lightwave Technology (2004)
On-chip methane sensing by near-IR absorption signatures in a photonic crystal slot waveguide
Wei Cheng Lai;Swapnajit Chakravarty;Xiaolong Wang;Cheyun Lin.
Optics Letters (2011)
Fabrication of core-shell Au-Pt nanoparticle film and its potential application as catalysis and SERS substrate
Lehui Lu;Guoying Sun;Hongjie Zhang;Haishui Wang.
Journal of Materials Chemistry (2004)
All ink-jet-printed carbon nanotube thin-film transistor on a polyimide substrate with an ultrahigh operating frequency of over 5 GHz
Jarrod Vaillancourt;Haiyan Zhang;Puminun Vasinajindakaw;Haitao Xia.
Applied Physics Letters (2008)
High speed silicon photonic crystal waveguide modulator for low voltage operation
Lanlan Gu;Wei Jiang;Xiaonan Chen;Li Wang.
Applied Physics Letters (2007)
System, method and apparatus for improved electrical-to-optical transmitters disposed within printed circuit boards
Ray T. Chen;Chulchae Choi.
(2006)
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