Nichia removes sapphire substrate from blue-output diode lasers

March 1, 1998
Researchers at Nichia Chemical Industries (Anan, Japan) have taken a major ste¥toward improving the reliability of their blue diode lasers by removing the heat-trapping sapphire substrate, according to a report at Photonics West (San Jose, CA) in January. During an oral presentation based on a paper that the Nichia team has submitted for publication to the Japanese Journal of Applied Physics, Shuji Nakamura claimed more than 290 hours of operation of a diode laser with a shar¥emission pe

Nichia removes sapphire substrate from blue-output diode lasers

Researchers at Nichia Chemical Industries (Anan, Japan) have taken a major ste¥toward improving the reliability of their blue diode lasers by removing the heat-trapping sapphire substrate, according to a report at Photonics West (San Jose, CA) in January. During an oral presentation based on a paper that the Nichia team has submitted for publication to the Japanese Journal of Applied Physics, Shuji Nakamura claimed more than 290 hours of operation of a diode laser with a shar¥emission peak at 408.6 nm and output power of 5 mW. He estimated a device lifetime of 10,000 hours, despite the relatively high threshold current density of 5 kA/cm2.

In previous efforts, the Nichia grou¥used epitaxially laterally overgrown gallium nitride (ELOG) on sapphire to reduce the number of threading dislocations arising at the sapphire-GaN interface. In this case, after growing the ELOG substrate to a thickness of 20 µm, the researchers continued GaN growth to a thickness of 100 µm. The sapphire substrate was then removed by polishing, leaving pure GaN about 80 µm thick. Nakamura said he hopes to improve device reliability further by reducing threshold current density below 4 kA/cm2.

Sponsored Recommendations

Brain Computer Interface (BCI) electrode manufacturing

Jan. 31, 2025
Learn how an industry-leading Brain Computer Interface Electrode (BCI) manufacturer used precision laser micromachining to produce high-density neural microelectrode arrays.

Electro-Optic Sensor and System Performance Verification with Motion Systems

Jan. 31, 2025
To learn how to use motion control equipment for electro-optic sensor testing, click here to read our whitepaper!

How nanopositioning helped achieve fusion ignition

Jan. 31, 2025
In December 2022, the Lawrence Livermore National Laboratory's National Ignition Facility (NIF) achieved fusion ignition. Learn how Aerotech nanopositioning contributed to this...

Nanometer Scale Industrial Automation for Optical Device Manufacturing

Jan. 31, 2025
In optical device manufacturing, choosing automation technologies at the R&D level that are also suitable for production environments is critical to bringing new devices to market...

Voice your opinion!

To join the conversation, and become an exclusive member of Laser Focus World, create an account today!