Realization of dynamic thermal emission control T Inoue, MD Zoysa, T Asano, S Noda Nature materials 13 (10), 928-931, 2014 | 338 | 2014 |
Conversion of broadband to narrowband thermal emission through energy recycling M De Zoysa, T Asano, K Mochizuki, A Oskooi, T Inoue, S Noda Nature Photonics 6 (8), 535-539, 2012 | 289 | 2012 |
Double-lattice photonic-crystal resonators enabling high-brightness semiconductor lasers with symmetric narrow-divergence beams M Yoshida, M De Zoysa, K Ishizaki, Y Tanaka, M Kawasaki, R Hatsuda, ... Nature materials 18 (2), 121-128, 2019 | 257 | 2019 |
Realization of narrowband thermal emission with optical nanostructures T Inoue, M De Zoysa, T Asano, S Noda Optica 2 (1), 27-35, 2015 | 135 | 2015 |
High-brightness scalable continuous-wave single-mode photonic-crystal laser M Yoshida, S Katsuno, T Inoue, J Gelleta, K Izumi, M De Zoysa, K Ishizaki, ... Nature 618 (7966), 727-732, 2023 | 94 | 2023 |
Near-infrared–to–visible highly selective thermal emitters based on an intrinsic semiconductor T Asano, M Suemitsu, K Hashimoto, M De Zoysa, T Shibahara, T Tsutsumi, ... Science advances 2 (12), e1600499, 2016 | 93 | 2016 |
Single-peak narrow-bandwidth mid-infrared thermal emitters based on quantum wells and photonic crystals T Inoue, M De Zoysa, T Asano, S Noda Applied Physics Letters 102 (19), 2013 | 93 | 2013 |
General recipe to realize photonic-crystal surface-emitting lasers with 100-W-to-1-kW single-mode operation T Inoue, M Yoshida, J Gelleta, K Izumi, K Yoshida, K Ishizaki, M De Zoysa, ... Nature Communications 13 (1), 3262, 2022 | 85 | 2022 |
Photonic-crystal lasers with two-dimensionally arranged gain and loss sections for high-peak-power short-pulse operation R Morita, T Inoue, M De Zoysa, K Ishizaki, S Noda Nature Photonics 15 (4), 311-318, 2021 | 76 | 2021 |
Photonic-crystal lasers with high-quality narrow-divergence symmetric beams and their application to LiDAR M Yoshida, M De Zoysa, K Ishizaki, W Kunishi, T Inoue, K Izumi, ... Journal of Physics: Photonics 3 (2), 022006, 2021 | 74 | 2021 |
Dually modulated photonic crystals enabling high-power high-beam-quality two-dimensional beam scanning lasers R Sakata, K Ishizaki, M De Zoysa, S Fukuhara, T Inoue, Y Tanaka, K Iwata, ... Nature communications 11 (1), 3487, 2020 | 66 | 2020 |
Comprehensive analysis of photonic-crystal surface-emitting lasers via time-dependent three-dimensional coupled-wave theory T Inoue, R Morita, M Yoshida, M De Zoysa, Y Tanaka, S Noda Physical Review B 99 (3), 035308, 2019 | 51 | 2019 |
Wide-bandgap GaN-based watt-class photonic-crystal lasers K Emoto, T Koizumi, M Hirose, M Jutori, T Inoue, K Ishizaki, M De Zoysa, ... Communications Materials 3 (1), 72, 2022 | 41 | 2022 |
Progress in photonic-crystal surface-emitting lasers K Ishizaki, M De Zoysa, S Noda Photonics 6 (3), 96, 2019 | 41 | 2019 |
Design of photonic-crystal surface-emitting lasers with enhanced in-plane optical feedback for high-speed operation T Inoue, M Yoshida, MD Zoysa, K Ishizaki, S Noda Optics Express 28 (4), 5050-5057, 2020 | 39 | 2020 |
High-power and high-beam-quality photonic-crystal surface-emitting lasers: a tutorial S Noda, T Inoue, M Yoshida, J Gelleta, MD Zoysa, K Ishizaki Advances in Optics and Photonics 15 (4), 977-1032, 2023 | 35 | 2023 |
On-chip integration and high-speed switching of multi-wavelength narrowband thermal emitters T Inoue, M De Zoysa, T Asano, S Noda Applied Physics Letters 108 (9), 2016 | 35 | 2016 |
Fabrication of photonic crystal structures by tertiary-butyl arsine-based metal–organic vapor-phase epitaxy for photonic crystal lasers M Yoshida, M Kawasaki, M De Zoysa, K Ishizaki, R Hatsuda, S Noda Applied Physics Express 9 (6), 062702, 2016 | 33 | 2016 |
Filter-free nondispersive infrared sensing using narrow-bandwidth mid-infrared thermal emitters T Inoue, M De Zoysa, T Asano, S Noda Applied Physics Express 7 (1), 012103, 2013 | 33 | 2013 |
High-power CW oscillation of 1.3-µm wavelength InP-based photonic-crystal surface-emitting lasers Y Itoh, N Kono, D Inoue, N Fujiwara, M Ogasawara, K Fujii, H Yoshinaga, ... Optics Express 30 (16), 29539-29545, 2022 | 32 | 2022 |