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Cleaning Technique Boosts Electronic, Photonic Prospects Of Aluminum Nitride - Vimarsana News

Cleaning Technique Boosts Electronic, Photonic Prospects Of Aluminum Nitride

A group of researchers led by Cornell is unlocking the full potential of aluminum nitride – an important material for the advancement of...

Surface Cleaning Technique For Better Aluminum Nitride Production - Vimarsana News

Surface Cleaning Technique For Better Aluminum Nitride Production

A team of Cornell scientists is revealing the complete potential of aluminum nitride, a crucial material for the progress of electronics and photonics, through the creation of a surface cleaning approach that allows for high-quality production.

Source: azom.com
Engineers Pave Way For Next-Gen Deep Ultraviolet Lasers - Vimarsana News

Engineers Pave Way For Next-Gen Deep Ultraviolet Lasers

Cornell engineers have created a deep-ultraviolet laser using semiconductor materials that show great promise for improving the use of ultraviolet...

Building a Deep-Ultraviolet Laser with Semiconductor Materials - Vimarsana News

Building a Deep-Ultraviolet Laser with Semiconductor Materials

A team of Cornell University engineers has built a deep-ultraviolet laser made up of semiconductor materials that demonstrate immense promise for enhancing the use of ultraviolet (UV) light for sanitizing water, sensing unsafe gases, and sterilizing medical tools, facilitating precision photolithography, and so on.

Ultrawide bandgap gives material high-power potential - Vimarsana News

Ultrawide bandgap gives material high-power potential

January 19, 2021 The path that leads to the next generation of high-power electronics is not long. But it needs to be wide. Very wide. A Cornell collaboration has found a way to grow a single crystalline layer of alpha-aluminum gallium oxide that has the widest energy bandgap to date – a discovery that clears the way for new semiconductors that will handle higher voltages, higher power densities and higher frequencies than previously seen. Provided The image at left shows the energy bandgap of alpha-aluminum gallium oxide compared to similar materials, and the effect of replacing ga...