Artículos con órdenes de acceso público - Kaikai Du(杜凯凯)Más información
No disponible en ningún lugar: 1
Adaptive thermal camouflage based on phase-changing material GST
Y Qu, Q Li, L Cai, M Pan, P Ghosh, K Du, M Qiu
2018 Conference on Lasers and Electro-Optics (CLEO), 1-2, 2018
Órdenes: National Natural Science Foundation of China
Disponibles en algún lugar: 15
Thermal camouflage based on the phase-changing material GST
Y Qu, Q Li, L Cai, M Pan, P Ghosh, K Du, M Qiu
Light: Science & Applications 7 (1), 26, 2018
Órdenes: National Natural Science Foundation of China
Control over emissivity of zero-static-power thermal emitters based on phase-changing material GST
KK Du, Q Li, YB Lyu, JC Ding, Y Lu, ZY Cheng, M Qiu
Light: Science & Applications 6 (1), e16194-e16194, 2017
Órdenes: National Natural Science Foundation of China
Dynamic thermal emission control based on ultrathin plasmonic metamaterials including phase‐changing material GST
Y Qu, Q Li, K Du, L Cai, J Lu, M Qiu
Laser & Photonics Reviews 11 (5), 1700091, 2017
Órdenes: National Natural Science Foundation of China
Broadband optical absorption based on single-sized metal-dielectric-metal plasmonic nanostructures with high-ε ″metals
W Wang, Y Qu, K Du, S Bai, J Tian, M Pan, H Ye, M Qiu, Q Li
Applied Physics Letters 110 (10), 2017
Órdenes: National Natural Science Foundation of China
An ultra-thin colored textile with simultaneous solar and passive heating abilities
H Luo, Q Li, K Du, Z Xu, H Zhu, D Liu, L Cai, P Ghosh, M Qiu
Nano energy 65, 103998, 2019
Órdenes: National Natural Science Foundation of China
Spatially resolved dynamically reconfigurable multilevel control of thermal emission
Z Xu, Q Li, K Du, S Long, Y Yang, X Cao, H Luo, H Zhu, P Ghosh, W Shen, ...
Laser & Photonics Reviews 14 (1), 1900162, 2020
Órdenes: Chinese Academy of Sciences, National Natural Science Foundation of China
Spatially and spectrally resolved narrowband optical absorber based on 2D grating nanostructures on metallic films
Y Qu, Q Li, H Gong, K Du, S Bai, D Zhao, H Ye, M Qiu
Advanced Optical Materials 4 (3), 480-486, 2016
Órdenes: National Natural Science Foundation of China
Near‐infrared super‐absorbing all‐dielectric metasurface based on single‐layer germanium nanostructures
J Tian, H Luo, Q Li, X Pei, K Du, M Qiu
Laser & Photonics Reviews 12 (9), 1800076, 2018
Órdenes: National Natural Science Foundation of China
Wavelength and thermal distribution selectable microbolometers based on metamaterial absorbers
K Du, Q Li, W Zhang, Y Yang, M Qiu
IEEE Photonics Journal 7 (3), 1-8, 2015
Órdenes: National Natural Science Foundation of China, Swedish Research Council
Wavelength-tunable mid-infrared thermal emitters with a non-volatile phase changing material
K Du, L Cai, H Luo, Y Lu, J Tian, Y Qu, P Ghosh, Y Lyu, Z Cheng, M Qiu, ...
Nanoscale 10 (9), 4415-4420, 2018
Órdenes: National Natural Science Foundation of China
Tunable narrowband mid-infrared thermal emitter with a bilayer cavity enhanced Tamm plasmon
H Zhu, H Luo, Q Li, D Zhao, L Cai, K Du, Z Xu, P Ghosh, M Qiu
Optics letters 43 (21), 5230-5233, 2018
Órdenes: National Natural Science Foundation of China
Nonvolatile tunable silicon-carbide-based midinfrared thermal emitter enabled by phase-changing materials
L Cai, K Du, Y Qu, H Luo, M Pan, M Qiu, Q Li
Optics Letters 43 (6), 1295-1298, 2018
Órdenes: National Natural Science Foundation of China
Simultaneous single-peak and narrowband thermal emission enabled by hybrid metal-polar dielectric structures
L Cai, Q Li, J Yu, H Luo, K Du, M Qiu
Applied Physics Letters 115 (9), 2019
Órdenes: National Natural Science Foundation of China
Transmission enhancement based on strong interference in metal-semiconductor layered film for energy harvesting
Q Li, K Du, K Mao, X Fang, D Zhao, H Ye, M Qiu
Scientific Reports 6 (1), 29195, 2016
Órdenes: National Natural Science Foundation of China
Chip-scale plasmonic sum frequency generation
S Bai, M Fang, EI Wei, Y Qu, Z Jin, J Tian, K Du, S Yu, CW Qiu, M Qiu, Q Li
IEEE Photonics Journal 9 (3), 1-8, 2017
Órdenes: National Natural Science Foundation of China
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