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Featured researches published by Tatsuma Saito.


Applied Physics Letters | 2018

Enhancement of slope efficiency and output power in GaN-based vertical-cavity surface-emitting lasers with a SiO2-buried lateral index guide

Masaru Kuramoto; Seiichiro Kobayashi; Takanobu Akagi; Komei Tazawa; Kazufumi Tanaka; Tatsuma Saito; Tetsuya Takeuchi

We have achieved a high output power of 6 mW from a 441 nm GaN-based vertical-cavity surface-emitting laser (VCSEL) under continuous wave (CW) operation, by reducing both the internal loss and the reflectivity of the front cavity mirror. A preliminary analysis of the internal loss revealed an enormously high transverse radiation loss in a conventional GaN-based VCSEL without lateral optical confinement (LOC). Introducing an LOC structure enhanced the slope efficiency by a factor of 4.7, with a further improvement to a factor of 6.7 upon reducing the front mirror reflectivity. The result was a slope efficiency of 0.87 W/A and an external differential quantum efficiency of 32% under pulsed operation. A flip-chip-bonded VCSEL also exhibited a high slope efficiency of 0.64 W/A and an external differential quantum efficiency of 23% for the front-side output under CW operation. The reflectivity of the cavity mirror was adjusted by varying the number of AlInN/GaN distributed Bragg reflector pairs from 46 to 42, corresponding to reflectivity values from 99.8% to 99.5%. These results demonstrate that a combination of internal loss reduction and cavity mirror control is a very effective way of obtaining a high output GaN-based VCSEL.We have achieved a high output power of 6 mW from a 441 nm GaN-based vertical-cavity surface-emitting laser (VCSEL) under continuous wave (CW) operation, by reducing both the internal loss and the reflectivity of the front cavity mirror. A preliminary analysis of the internal loss revealed an enormously high transverse radiation loss in a conventional GaN-based VCSEL without lateral optical confinement (LOC). Introducing an LOC structure enhanced the slope efficiency by a factor of 4.7, with a further improvement to a factor of 6.7 upon reducing the front mirror reflectivity. The result was a slope efficiency of 0.87 W/A and an external differential quantum efficiency of 32% under pulsed operation. A flip-chip-bonded VCSEL also exhibited a high slope efficiency of 0.64 W/A and an external differential quantum efficiency of 23% for the front-side output under CW operation. The reflectivity of the cavity mirror was adjusted by varying the number of AlInN/GaN distributed Bragg reflector pairs from 46 to 42, ...


Archive | 2009

Semicondutor manufacturing method

Tatsuma Saito; Shinichi Tanaka; Yusuke Yokobayashi


Archive | 2010

METHOD OF MANUFACTURING SEMICONDUCTOR LIGHT EMITTING ELEMENTS

Noriko Nihei; Tatsuma Saito; Yusuke Yokobayashi


Archive | 2012

LED ARRAY CAPABLE OF REDUCING UNEVEN BRIGHTNESS DISTRIBUTION

Mamoru Miyachi; Tatsuma Saito; Mitsunori Harada


Archive | 2012

OPTICAL SEMICONDUCTOR ELEMENT AND MANUFACTURING METHOD OF THE SAME

Tatsuma Saito


Archive | 2013

SEMICONDUCTOR LIGHT EMITTING ELEMENT ARRAY

Tatsuma Saito; Mamoru Miyachi; Takako Chinone; Noriko Nihei; Takanobu Akagi


Archive | 2012

Semiconductor light-emitting element and flash-light device

Keima Kono; Eiji Takashiro; Tatsuma Saito; Tsutomu Okubo


Archive | 2010

Optical semiconductor device, method for manufacturing optical semiconductor device, and method for manufacturing optical semiconductor apparatus

Tatsuma Saito; Yusuke Yokobayashi


Archive | 2016

LASER LIGHT-EMITTING APPARATUS

Komei Tazawa; Tatsuma Saito


Archive | 2011

SEMICONDUCTOR LIGHT-EMITTING DEVICE MANUFACTURING METHOD AND SEMICONDUCTOR LIGHT-EMITTING DEVICE

Ji-Hao Liang; Tatsuma Saito

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