Skip to main navigation
Skip to search
Skip to main content
Penn State Home
Help & FAQ
Link opens in a new tab
Search content at Penn State
Home
Researchers
Research output
Research units
Equipment
Grants & Projects
Prizes
Activities
Graded metascreens to enable a new degree of nanoscale light management
Nasim Mohammadi Estakhri
,
Christos Argyropoulos
, Andrea Alù
Electrical Engineering
Research output
:
Contribution to journal
›
Article
›
peer-review
32
Link opens in a new tab
Scopus citations
Overview
Fingerprint
Fingerprint
Dive into the research topics of 'Graded metascreens to enable a new degree of nanoscale light management'. Together they form a unique fingerprint.
Sort by
Weight
Alphabetically
Keyphrases
Metasurface
100%
Optical Waves
50%
Nanoparticles
25%
Light Property
25%
Ultrathin
25%
Promising Applications
25%
Metamaterials
25%
Management Techniques
25%
Broadband Absorption
25%
Application-oriented
25%
Subwavelength
25%
Potential Impact
25%
Surface Element
25%
Optical Metasurfaces
25%
Polarization State
25%
Scattering Response
25%
Polarizable
25%
Electromagnetic Waves
25%
Deep Subwavelength
25%
Diffractive
25%
Non-periodic
25%
Carpet Cloak
25%
Optical Grating
25%
Underground Physics
25%
Local Interaction
25%
Localized Waves
25%
Phase State
25%
Spatially Modulated
25%
Equivalence Principle
25%
Subwavelength Scale
25%
Integrated Nanophotonics
25%
Nanoscale Resolution
25%
Optical Structure
25%
Alignment-free
25%
Wave-matter Interactions
25%
Thin Film Solar Cells
25%
Three-dimensional Metamaterials
25%
Physics
Nanoscale
100%
Metasurface
100%
Metamaterial
40%
Thin Films
20%
Electromagnetic Radiation
20%
Nanoparticle
20%
Physics
20%
Electromagnetic Absorption
20%
Beam Splitter
20%
Matter Wave
20%
Nanophotonics
20%
Electromagnetism
20%
Solar Cell
20%
Material Science
Metamaterial
100%
Surface (Surface Science)
100%
Thin Films
50%
Nanoparticle
50%
Solar Cell
50%