Tailored emission color synthesis using microfacet quantum wells consisting of nitride semiconductors without phosphors M Funato, T Kotani, T Kondou, Y Kawakami, Y Narukawa, T Mukai Applied physics letters 88 (26), 261920, 2006 | 97 | 2006 |
Selective formation of ZnO nanodots on nanopatterned substrates by metalorganic chemical vapor deposition SW Kim, T Kotani, M Ueda, S Fujita, S Fujita Applied physics letters 83 (17), 3593-3595, 2003 | 57 | 2003 |
Observation of mid-infrared intersubband absorption in non-polar m-plane AlGaN/GaN multiple quantum wells T Kotani, M Arita, Y Arakawa Applied Physics Letters 105 (26), 2014 | 47 | 2014 |
Doping dependent blue shift and linewidth broadening of intersubband absorption in non-polar m-plane AlGaN/GaN multiple quantum wells T Kotani, M Arita, Y Arakawa Applied Physics Letters 107 (11), 2015 | 32 | 2015 |
Temperature dependence of mid-infrared intersubband absorption in AlGaN/GaN multiple quantum wells T Kotani, M Arita, K Hoshino, Y Arakawa Applied Physics Letters 108 (5), 052102, 2016 | 28 | 2016 |
Image watching glasses identification device, image watching system, pair of image watching glasses, image watching glasses identification program, computer-readable recording … G Mori, T Kotani, H Tajima, S Maeda, T Okumura, T Arimoto, T Sakai, ... US Patent 8,982,194, 2015 | 24 | 2015 |
Investigation on force transmission of direct-drive thorax unit with four ultrasonic motors for a flapping microaerial vehicle M Hamamoto, T Kotani, I Nakano, Y Ohta, K Hara, Y Murakami, T Hisada Advanced Robotics 28 (3), 133-144, 2014 | 16 | 2014 |
Self-tailored one-dimensional ZnO nanodot arrays formed by metalorganic chemical vapor deposition SW Kim, M Ueda, T Kotani, S Fujita, S Fujita Japanese journal of applied physics 42 (6A), L568, 2003 | 16 | 2003 |
Ultrasonic motor and ultrasonic vibrator T Kotani, M Hamamoto US Patent 8,058,773, 2011 | 15 | 2011 |
Ultrasonic motor M Hamamoto, T Kotani US Patent 7,932,660, 2011 | 12 | 2011 |
View-switching glasses, display control device, display control system, and computer-readable storage medium T Kotani, H Tajima, G Mori, Y Adachi, Y Harada, T Kitazawa, H Etoh US Patent App. 13/444,217, 2012 | 11 | 2012 |
Semipolar {n [n¯] 01} InGaN/GaN ridge quantum wells (n= 1− 3) fabricated by a regrowth technique M Funato, T Kotani, T Kondou, Y Kawakami Applied Physics Letters 100, 162107, 2012 | 11 | 2012 |
A theoretical analysis of the optical absorption properties in one-dimensional InAs/GaAs quantum dot superlattices T Kotani, S Birner, P Lugli, C Hamaguchi Journal of Applied Physics 115 (14), 2014 | 10 | 2014 |
Selective growth of ZnO nanodots prepared by metalorganic chemical vapor deposition on focused-ion beam-nanopatterned substrates SW Kim, T Kotani, M Ueda, S Fujita, S Fujita Physica E: Low-dimensional Systems and Nanostructures 21 (2-4), 601-605, 2004 | 9 | 2004 |
Proposal of high efficiency solar cells with closely stacked InAs/In0. 48Ga0. 52P quantum dot superlattices: Analysis of polarized absorption characteristics via intermediate–band H Yoshikawa, T Kotani, Y Kuzumoto, M Izumi, Y Tomomura, C Hamaguchi Applied Physics Letters 105 (1), 2014 | 8 | 2014 |
Fabrication and characterization of GaN‐based distributed Bragg reflector mirrors for low lasing threshold and integrated photonics T Kotani, Y Hatada, M Funato, Y Narukawa, T Mukai, Y Kawakami, ... physica status solidi (c) 2 (7), 2895-2898, 2005 | 8 | 2005 |
Nitride semiconductor device and quantum cascade laser using the same T Kotani, Y Arakawa US Patent 10,038,306, 2018 | 7 | 2018 |
Detector T Kotani, H Yoshikawa, T Kitazawa, Y Arakawa, J Kwoen US Patent App. 15/843,144, 2018 | 6 | 2018 |
Carrier density dependences of anisotropic optical properties in closely stacked InAs/GaAs one-dimensional quantum dot superlattices T Kotani, P Lugli, C Hamaguchi Applied Physics Letters 103, 031110, 2013 | 5 | 2013 |
Observation of infrared absorption of InAs quantum dot structures in AlGaAs matrix toward high-efficiency solar cells H Yoshikawa, K Watanabe, T Kotani, M Izumi, S Iwamoto, Y Arakawa Japanese Journal of Applied Physics 57 (6), 062001, 2018 | 4 | 2018 |