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Research Program to Study Microfluidic Laser-Induced Nucleation of Preselected Organic Molecules

Research Program to Study Microfluidic Laser-Induced Nucleation of Preselected Organic Molecules

Applying Strain on a Thin Semiconductor Film to Achieve Near 100% Light-Emission Efficiency

Applying Strain on a Thin Semiconductor Film to Achieve Near 100% Light-Emission Efficiency

Cornell Researchers Propose New Way to Modulate the Absorptive and Refractive Qualities of Metamaterials

Cornell Researchers Propose New Way to Modulate the Absorptive and Refractive Qualities of Metamaterials

Dynamic Control of THz Waves by Rotating Layers of Cascaded Metasurfaces

Dynamic Control of THz Waves by Rotating Layers of Cascaded Metasurfaces

New Strategy Allows Polymeric Materials to Emit Light in Any of the Three Primary Colors

New Strategy Allows Polymeric Materials to Emit Light in Any of the Three Primary Colors

A Single Metasurface can Effectively Tune Various Properties of Laser Light

A Single Metasurface can Effectively Tune Various Properties of Laser Light

Observing Electron Dynamics of OLED Films Using the TR-PEEM Method

Observing Electron Dynamics of OLED Films Using the TR-PEEM Method

Using Hyperbolic Metamaterials for Flexible Control of Near-Field Light

Using Hyperbolic Metamaterials for Flexible Control of Near-Field Light

Researchers Use Frontera Supercomputer to Simulate Solar Cell Fabrication

Researchers Use Frontera Supercomputer to Simulate Solar Cell Fabrication

Light-Shrinking Material Turns a Conventional Light Microscope into a Super-Resolution Device

Light-Shrinking Material Turns a Conventional Light Microscope into a Super-Resolution Device

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