Abstract:
A laser irradiation apparatus is provided. The laser irradiation apparatus includes a laser beam generator configured to generate laser beams; a slit unit configured to selectively transmit the laser beams; a mirror unit configured to change a path of the selectively transmitted laser beams, so as to irradiate the selectively transmitted laser beams onto a processing target; a first optical system, wherein a first portion of the selectively transmitted laser beams penetrates through the mirror unit and is projected to the first optical system; and a second optical system, wherein a second portion of the selectively transmitted laser beams penetrates through the mirror unit and is projected to the second optical system.
Abstract:
A display device includes a lower panel including a light emitting element layer, and an upper panel disposed on the lower panel, where the upper panel includes a partition pattern, an optical control layer including multiple optical control portions which are separately disposed by the partition pattern, and a color filter layer including multiple color filters which are separately disposed by the partition pattern, and disposed on the optical control layer. Each of the optical control layer and the color filter layer includes color conversion particles and color filter particles, a particle number per unit volume of the color conversion particles is greater in the optical control layer than in the color filter layer, and a particle number per unit volume of the color filter particles is greater in the color filter layer than in the optical control layer.
Abstract:
Embodiments provide an ink composition and a display device. The ink composition includes a quantum dot, a first monomer that is an acrylate-based monomer, a second monomer, a scatterer, and an initiator. The second monomer is represented by Formula 1 or Formula 1-A, which are explained in the specification: