Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Hydrogel‐Waveguiding On‐Chip Meta‐Optics for Dynamic Multicolor Holography

View through CrossRef
AbstractOn‐chip integrated meta‐optics hold tremendous potential for optical imaging and display applications compatible with integrated photonic devices. Despite recent endeavors in multi‐dimensional image display, it remains a challenge to realize dynamic holography applications with on‐chip integration scheme and facile accessible tuning approach. Herein, an on‐chip hydrogel‐waveguiding platform with single‐step fabrication is demonstrated for dynamic colorful holography. By exploiting the optical tunable property of the waveguiding hydrogel, the on‐chip hydrogel metasurface enables optical concealment ON/OFF and dynamic dual‐channel holographic switch within 310 ms through a simple exhalation process. Furthermore, utilizing the waveguiding hydrogel dispersion and the correlation between extraction efficiency and relative humidity, a color‐mixed holographic image is encrypted and successfully exhibited at specific humidity condition. Beyond the conventional static on‐chip monochromatic holography, such a dynamic on‐chip hydrogel platform enjoys satisfactory humidity‐responsivity, high integration capability, full‐color potential, and zero‐order diffraction interference‐free, which suggests potential applications in active optical information concealment/encryption, full‐color holography, and next‐generation wearable AR devices.
Title: Hydrogel‐Waveguiding On‐Chip Meta‐Optics for Dynamic Multicolor Holography
Description:
AbstractOn‐chip integrated meta‐optics hold tremendous potential for optical imaging and display applications compatible with integrated photonic devices.
Despite recent endeavors in multi‐dimensional image display, it remains a challenge to realize dynamic holography applications with on‐chip integration scheme and facile accessible tuning approach.
Herein, an on‐chip hydrogel‐waveguiding platform with single‐step fabrication is demonstrated for dynamic colorful holography.
By exploiting the optical tunable property of the waveguiding hydrogel, the on‐chip hydrogel metasurface enables optical concealment ON/OFF and dynamic dual‐channel holographic switch within 310 ms through a simple exhalation process.
Furthermore, utilizing the waveguiding hydrogel dispersion and the correlation between extraction efficiency and relative humidity, a color‐mixed holographic image is encrypted and successfully exhibited at specific humidity condition.
Beyond the conventional static on‐chip monochromatic holography, such a dynamic on‐chip hydrogel platform enjoys satisfactory humidity‐responsivity, high integration capability, full‐color potential, and zero‐order diffraction interference‐free, which suggests potential applications in active optical information concealment/encryption, full‐color holography, and next‐generation wearable AR devices.

Related Results

Multi‐Wavelength Achromatic 3D Meta‐holography with Zoom Function
Multi‐Wavelength Achromatic 3D Meta‐holography with Zoom Function
AbstractWith the development of nanofabrication technology, meta‐holography has shown unprecedented potential for light regulation. However, due to the wavelength mismatch, chromat...
Local Use of Hydrogel with Amiodarone in Cardiac Surgery: Experiment and Translation to the Clinic
Local Use of Hydrogel with Amiodarone in Cardiac Surgery: Experiment and Translation to the Clinic
The objective of this study was to study the use of the hydrogel biopolymer based on sodium alginate (“Colegel”) with a drug substance—amiodarone—for the prevention of postoperativ...
Hydrogel-based biosensing using plasmonic nanoparticle labels for optical biomarker detection
Hydrogel-based biosensing using plasmonic nanoparticle labels for optical biomarker detection
Plasmonic nanoparticles are widely used in biosensing strategies because their localized surface plasmon resonance (LSPR) provides unique optical properties and is highly sensitive...
DETERMINATION OF RESWELLING PROPERTIES AND WATER DIFFUSION MECHANISM OF HYDROGEL COMPOSITES
DETERMINATION OF RESWELLING PROPERTIES AND WATER DIFFUSION MECHANISM OF HYDROGEL COMPOSITES
This study focused on acrylamide/N-vinyl-2-pyrrolidone chemically cross-linked hydrogel composites. As fillers, sepiolite and alkyl ammonium salt modified sepiolite were used in th...
Light People: Professor Liangcai Cao
Light People: Professor Liangcai Cao
EditorialHolography utilizes the principles of wave interference and diffraction to record and reconstruct images, which can highly restore the three-dimensional features of object...
Antibacterial Property of Cationic Hydrogels
Antibacterial Property of Cationic Hydrogels
【Introduction】 Physical and mechanical properties of a hydrogel, which is soft and has high water content, are similar to those of living tissues. Thus, a hydrogel ...
Three-dimensional hydrogel with human Wharton jelly-derived mesenchymal stem cells towards nucleus pulposus niche
Three-dimensional hydrogel with human Wharton jelly-derived mesenchymal stem cells towards nucleus pulposus niche
Introduction: A regenerative strategy employing extracellular matrix (ECM)-based biomaterials and stem cells provide a better approach to mimicking the three-dimensional (3D) micro...
Comparing genome-wide chromatin profiles using ChIP-chip or ChIP-seq
Comparing genome-wide chromatin profiles using ChIP-chip or ChIP-seq
AbstractMotivation: ChIP-chip and ChIP-seq technologies provide genome-wide measurements of various types of chromatin marks at an unprecedented resolution. With ChIP samples colle...

Back to Top