Segui
Di Wang
Di Wang
Purdue University, Apple Inc.
Email verificata su purdue.edu
Titolo
Citata da
Citata da
Anno
Colors with plasmonic nanostructures: A full-spectrum review
M Song, D Wang, S Peana, S Choudhury, P Nyga, ZA Kudyshev, H Yu, ...
Applied physics reviews 6 (4), 2019
1782019
Material platforms for optical metasurfaces
SM Choudhury, D Wang, K Chaudhuri, C DeVault, AV Kildishev, ...
Nanophotonics 7 (6), 959-987, 2018
1382018
Enhanced graphene photodetector with fractal metasurface
J Fang, D Wang, CT DeVault, TF Chung, YP Chen, A Boltasseva, ...
Nano Letters 17 (1), 57-62, 2017
1302017
An integrated low phase noise radiation-pressure-driven optomechanical oscillator chipset
X Luan, Y Huang, Y Li, JF McMillan, J Zheng, SW Huang, PC Hsieh, T Gu, ...
Scientific Reports 4 (1), 6842, 2015
662015
Enhancing the graphene photocurrent using surface plasmons and a pn junction
D Wang, AEL Allcca, TF Chung, AV Kildishev, YP Chen, A Boltasseva, ...
Light: Science & Applications 9 (1), 126, 2020
642020
Enabling optical steganography, data storage, and encryption with plasmonic colors
M Song, D Wang, ZA Kudyshev, Y Xuan, Z Wang, A Boltasseva, ...
Laser & Photonics Reviews 15 (3), 2000343, 2021
632021
Solar thermoplasmonic nanofurnace for high-temperature heterogeneous catalysis
A Naldoni, ZA Kudyshev, L Mascaretti, SP Sarmah, S Rej, JP Froning, ...
Nano Letters 20 (5), 3663-3672, 2020
572020
Plasmon resonance in multilayer graphene nanoribbons
NK Emani, D Wang, TF Chung, LJ Prokopeva, AV Kildishev, VM Shalaev, ...
Laser & Photonics Reviews 9 (6), 650-655, 2015
522015
Synchrotron radiation from an accelerating light pulse
M Henstridge, C Pfeiffer, D Wang, A Boltasseva, VM Shalaev, A Grbic, ...
Science 362 (6413), 439-442, 2018
392018
Accelerating light with metasurfaces
M Henstridge, C Pfeiffer, D Wang, A Boltasseva, VM Shalaev, A Grbic, ...
Optica 5 (6), 678-681, 2018
372018
Enhancing sensitivity to ambient refractive index with tunable few-layer graphene/hBN nanoribbons
H Jiang, S Choudhury, ZA Kudyshev, D Wang, LJ Prokopeva, P Xiao, ...
Photonics Research 7 (7), 815-822, 2019
322019
Spatial and Temporal Nanoscale Plasmonic Heating Quantified by Thermoreflectance
D Wang, YR Koh, ZA Kudyshev, K Maize, AV Kildishev, A Boltasseva, ...
Nano Letters, 2019
292019
Chip‐Compatible Quantum Plasmonic Launcher
CC Chiang, SI Bogdanov, OA Makarova, X Xu, S Saha, D Shah, ...
Advanced Optical Materials 8 (20), 2000889, 2020
112020
Modulating phase by metasurfaces with gated ultra-thin TiN films
H Jiang, H Reddy, D Shah, ZA Kudyshev, S Choudhury, D Wang, Y Jiang, ...
Nanoscale 11 (23), 11167-11172, 2019
92019
Plasmon resonance in single-and double-layer CVD graphene nanoribbons
D Wang, NK Emani, TF Chung, L Prokopeva, AV Kildishev, VM Shalaev, ...
CLEO: QELS_Fundamental Science, FTu1E. 3, 2015
52015
Tunable plasmonic color device and method of making the same
AV Kildishev, D Wang, ZA Kudyshev, M Song, A Boltasseva, VM Shalaev
US Patent 11,656,386, 2023
42023
Computationally efficient surface conductivity graphene model for active metadevices
LJ Prokopeva, D Wang, ZA Kudyshev, AV Kildishev
IEEE Transactions on Antennas and Propagation 68 (3), 1825-1835, 2020
42020
Tunable plasmonic color device and method of making the same
AV Kildishev, D Wang, ZA Kudyshev, M Song, A Boltasseva, VM Shalaev
US Patent App. 16/411,038, 2019
32019
Wavelength-dependent optical-rotation manipulation for active color display and highly secure encryption
M Song, AV Kildishev, D Wang, Z Wang, Y Xuan, A Boltasseva, H Yu, ...
CLEO: QELS_Fundamental Science, FTh4M. 2, 2018
22018
Thermoreflectance Imaging of Optically Pumped Gap Plasmon Structures
D Wang, K Maize, M Song, A Boltasseva, VM Shalaev, A Shakouri, ...
CLEO: QELS_Fundamental Science, FTh1K. 8, 2018
22018
Il sistema al momento non può eseguire l'operazione. Riprova più tardi.
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