Advances in terahertz communications accelerated by photonics T Nagatsuma, G Ducournau, CC Renaud Nature Photonics 10 (6), 371-379, 2016 | 1649 | 2016 |
Present and future of terahertz communications HJ Song, T Nagatsuma IEEE transactions on terahertz science and technology 1 (1), 256-263, 2011 | 1407 | 2011 |
A review on terahertz communications research T Kleine-Ostmann, T Nagatsuma Journal of Infrared, Millimeter, and Terahertz Waves 32, 143-171, 2011 | 1189 | 2011 |
Uni-Traveling-Carrier Photodiodes T Ishibashi, N Shimizu, S Kodama, H Ito, T Nagatsuma, T Furuta OSA TOPS on Ultrafast Electronics and Optoelectronics 1997 13, 83-87, 1997 | 588* | 1997 |
Terahertz integrated electronic and hybrid electronic–photonic systems K Sengupta, T Nagatsuma, DM Mittleman Nature Electronics 1 (12), 622-635, 2018 | 578 | 2018 |
Terahertz wireless communications based on photonics technologies T Nagatsuma, S Horiguchi, Y Minamikata, Y Yoshimizu, S Hisatake, ... Optics express 21 (20), 23736-23747, 2013 | 554 | 2013 |
Terahertz topological photonics for on-chip communication Y Yang, Y Yamagami, X Yu, P Pitchappa, J Webber, B Zhang, M Fujita, ... Nature Photonics 14, 446-451, 2020 | 541 | 2020 |
High-speed and high-output InP-InGaAs unitraveling-carrier photodiodes H Ito, S Kodama, Y Muramoto, T Furuta, T Nagatsuma, T Ishibashi IEEE Journal of selected topics in quantum electronics 10 (4), 709-727, 2004 | 507 | 2004 |
120-GHz-band millimeter-wave photonic wireless link for 10-Gb/s data transmission A Hirata, T Kosugi, H Takahashi, R Yamaguchi, F Nakajima, T Furuta, ... IEEE transactions on microwave theory and techniques 54 (5), 1937-1944, 2006 | 397 | 2006 |
Flux‐flow type Josephson oscillator for millimeter and submillimeter wave region T Nagatsuma, K Enpuku, F Irie, K Yoshida J. Appl. Phys 54 (6), 3302-3309, 1983 | 283* | 1983 |
110-GHz, 50%-efficiency mushroom-mesa waveguide pin photodiode for a 1.55-μm wavelength K Kato, A Kozen, Y Muramoto, Y Itaya, T Nagatsuma, M Yaita IEEE Photonics Technology Letters 6 (6), 719-721, 1994 | 262 | 1994 |
120-GHz wireless link using photonic techniques for generation, modulation, and emission of millimeter-wave signals A Hirata, M Harada, T Nagatsuma Journal of Lightwave Technology 21 (10), 2145-2153, 2003 | 259 | 2003 |
InP/InGaAs uni-traveling-carrier photodiodes T Ishibashi, T Furuta, H Fushimi, S Kodama, H Ito, T Nagatsuma, ... IEICE transactions on electronics 83 (6), 938-949, 2000 | 254 | 2000 |
24 Gbit/s data transmission in 300 GHz band for future terahertz communications HJ Song, K Ajito, Y Muramoto, A Wakatsuki, T Nagatsuma, N Kukutsu Electronics Letters 48 (15), 953-954, 2012 | 251 | 2012 |
Terahertz technologies: present and future T Nagatsuma IEICE Electronics Express 8 (14), 1127-1142, 2011 | 236 | 2011 |
Handbook of terahertz technologies: devices and applications HJ Song, T Nagatsuma CRC press, 2015 | 235 | 2015 |
High‐power RF photodiodes and their applications T Nagatsuma, H Ito, T Ishibashi Laser & Photonics Reviews 3 (1‐2), 123-137, 2009 | 210 | 2009 |
Extremely low-loss terahertz waveguide based on silicon photonic-crystal slab K Tsuruda, M Fujita, T Nagatsuma Optics express 23 (25), 31977-31990, 2015 | 192 | 2015 |
120-GHz-band wireless link technologies for outdoor 10-Gbit/s data transmission A Hirata, T Kosugi, H Takahashi, J Takeuchi, H Togo, M Yaita, N Kukutsu, ... IEEE Transactions on Microwave Theory and Techniques 60 (3), 881-895, 2012 | 188 | 2012 |
The 2023 terahertz science and technology roadmap A Leitenstorfer, AS Moskalenko, T Kampfrath, J Kono, E Castro-Camus, ... Journal of Physics D: Applied Physics 56 (22), 223001, 2023 | 177 | 2023 |