A transparent display simultaneously enables visualization of the images displayed on it as well as the view behind it, and therefore can be applied to, for instance, augmented reality (AR), virtual reality (VR), and head up display (HUD). Many solutions have been proposed for this purpose. Recently, the idea of frequency-selective scattering of red, green and blue light while transmitting visible light of other colours to achieve transparent projection display has been proposed, by taking advantage of metallic nanoparticle's localized surface plasmon resonance (LSPR). In this article, a review of the recent progress of frequency-selective scattering of red, green and blue light that are based on metallic nanoparticle's LSPR is presented. A...
This work presents an original approach to create holograms based on the optical scattering of plasm...
As visual display technologies move closer to producing true three dimensional displays, pixel techn...
Utilizing the localized surface plasmon resonance (LSPR) effect of metallic nanoparticles enables th...
Frequency-selective scattering of light can be achieved by metallic nanoparticle’s localized surface...
Frequency-selective scattering of light can be achieved by metallic nanoparticle’s localized surface...
Selective scattering of red, green, and blue light and transmitting other visible light to achieve a...
Frequency-selective scattering of light can be achieved by metallic nanoparticle’s localized surfac...
Transparent displays enabled by nanoparticle scattering have potentially attractive features, includ...
Transparent displays enabled by nanoparticle scattering have potentially attractive features, includ...
The ability to display graphics and texts on a transparent screen can enable many useful application...
The introduction of nanoparticles-based screens [C. W. Hsu, Nat. Commun. 5, 3152 (2014)] has paved t...
The introduction of nanoparticles-based screens [C. W. Hsu, Nat. Commun. 5, 3152 (2014)] has paved t...
(Figure Presented) Noble metal nanostructures attract much interest because of their unique properti...
(Figure Presented) Noble metal nanostructures attract much interest because of their unique properti...
(Figure Presented) Noble metal nanostructures attract much interest because of their unique properti...
This work presents an original approach to create holograms based on the optical scattering of plasm...
As visual display technologies move closer to producing true three dimensional displays, pixel techn...
Utilizing the localized surface plasmon resonance (LSPR) effect of metallic nanoparticles enables th...
Frequency-selective scattering of light can be achieved by metallic nanoparticle’s localized surface...
Frequency-selective scattering of light can be achieved by metallic nanoparticle’s localized surface...
Selective scattering of red, green, and blue light and transmitting other visible light to achieve a...
Frequency-selective scattering of light can be achieved by metallic nanoparticle’s localized surfac...
Transparent displays enabled by nanoparticle scattering have potentially attractive features, includ...
Transparent displays enabled by nanoparticle scattering have potentially attractive features, includ...
The ability to display graphics and texts on a transparent screen can enable many useful application...
The introduction of nanoparticles-based screens [C. W. Hsu, Nat. Commun. 5, 3152 (2014)] has paved t...
The introduction of nanoparticles-based screens [C. W. Hsu, Nat. Commun. 5, 3152 (2014)] has paved t...
(Figure Presented) Noble metal nanostructures attract much interest because of their unique properti...
(Figure Presented) Noble metal nanostructures attract much interest because of their unique properti...
(Figure Presented) Noble metal nanostructures attract much interest because of their unique properti...
This work presents an original approach to create holograms based on the optical scattering of plasm...
As visual display technologies move closer to producing true three dimensional displays, pixel techn...
Utilizing the localized surface plasmon resonance (LSPR) effect of metallic nanoparticles enables th...