A new, simple polymer-bilayer illumination system is presented which efficiently emits linearly polarized light for use, for example, in liquid crystal displays. Polarization of incoming light is accomplished through polarization-selective reflection at the interface between an optically isotropic light guide and a birefringent top-layer mounted thereon. Light of one polarization direction is coupled-out from the latter layer by means of an appropriate relief structure. Light of the other polarization direction is trapped in the isotropic waveguide and may be recycled, which ultimately permits polarization efficiencies that approach unity.</p
A novel polymer bilayer illumination system is presented from which linearly polarized light is emit...
A novel polymer bilayer illumination system is presented from which linearly polarized light is emit...
A novel polymer bilayer illumination system is presented from which linearly polarized light is emit...
A new, simple polymer-bilayer illumination system is presented which efficiently emits linearly pola...
A new, simple polymer-bilayer illumination system is presented which efficiently emits linearly pola...
A new, simple polymer-bilayer illumination system is presented which efficiently emits linearly pola...
A new polarized backlight system for liquid-crystal displays (LCDs) is presented in which one linear...
A new polarized backlight system for liquid-crystal displays (LCDs) is presented in which one linear...
A new polarized backlight system for liquid-crystal displays (LCDs) is presented in which one linear...
A new polarized backlight system for liquid-crystal displays (LCDs) is presented in which one linear...
\u3cp\u3eA new polarized backlight system for liquid-crystal displays (LCDs) is presented in which o...
We propose a new optical design to produce linearly polarized illumination for liquid crystal displa...
We propose a new optical design to produce linearly polarized illumination for liquid crystal displa...
We propose a new optical design to produce linearly polarized illumination for liquid crystal displa...
A novel polymer bilayer illumination system is presented from which linearly polarized light is emit...
A novel polymer bilayer illumination system is presented from which linearly polarized light is emit...
A novel polymer bilayer illumination system is presented from which linearly polarized light is emit...
A novel polymer bilayer illumination system is presented from which linearly polarized light is emit...
A new, simple polymer-bilayer illumination system is presented which efficiently emits linearly pola...
A new, simple polymer-bilayer illumination system is presented which efficiently emits linearly pola...
A new, simple polymer-bilayer illumination system is presented which efficiently emits linearly pola...
A new polarized backlight system for liquid-crystal displays (LCDs) is presented in which one linear...
A new polarized backlight system for liquid-crystal displays (LCDs) is presented in which one linear...
A new polarized backlight system for liquid-crystal displays (LCDs) is presented in which one linear...
A new polarized backlight system for liquid-crystal displays (LCDs) is presented in which one linear...
\u3cp\u3eA new polarized backlight system for liquid-crystal displays (LCDs) is presented in which o...
We propose a new optical design to produce linearly polarized illumination for liquid crystal displa...
We propose a new optical design to produce linearly polarized illumination for liquid crystal displa...
We propose a new optical design to produce linearly polarized illumination for liquid crystal displa...
A novel polymer bilayer illumination system is presented from which linearly polarized light is emit...
A novel polymer bilayer illumination system is presented from which linearly polarized light is emit...
A novel polymer bilayer illumination system is presented from which linearly polarized light is emit...
A novel polymer bilayer illumination system is presented from which linearly polarized light is emit...