SubDiffraction-Limited Optical Imaging with a Silver Superlens
Explore this paper's citation graph
Summary
This work demonstrated sub–diffraction-limited imaging with 60-nanometer half-pitch resolution, or one-sixth of the illumination wavelength, using silver as a natural optical superlens and showed that arbitrary nanostructures can be imaged with good fidelity.
- Type
- article
- Published
- 2005-04-22
- Cited by
- 3,823
- References
- 41
- OpenAlex
- https://openalex.org/W1990299300
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:1085807
Keywords
Superlens, Optics, Diffraction, Wavelength, Materials science
References
- Negative refraction makes a perfect lens
- Regenerating evanescent waves from a silver superlens.
- IL-13受体α2降低血吸虫病肉芽肿的炎症反应并延长宿主存活时间[英]/Mentink-Kane MM,Cheever AW,Thompson RW,et al//Proc Natl Acad Sci U S A
- Overcoming the diffraction limit with a planar left-handed transmission-line lens.
- Diffraction Gratings and Applications
- Extraordinary optical transmission through sub-wavelength hole arrays
- Mimicking Surface Plasmons with Structured Surfaces
- Beaming Light from a Subwavelength Aperture
- Experimental Verification of a Negative Index of Refraction
- Rapid growth of evanescent wave by a silver superlens
- Microstructured magnetic materials for RF flux guides in magnetic resonance imaging.
- The asymmetric lossy near-perfect lens
- Surface plasmon resonant interference nanolithography technique
- Photonic crystals: Imaging by flat lens using negative refraction
- Experimental and theoretical verification of focusing in a large, periodically loaded transmission line negative refractive index metamaterial.
- Imaging properties of a metamaterial superlens
- Metamaterial endoscope for magnetic field transfer: near field imaging with magnetic wires.
- An epidemic of complex dysmorphologic syndromes in southeast Spain?
- Submicroscopic pattern replication with visible light
- Terahertz Magnetic Response from Artificial Materials
Cited by
- Plasmonics: Fundamentals and Applications
- Serial time-encoded amplified imaging for real-time observation of fast dynamic phenomena
- Subwavelength electromagnetic near-field imaging of point dipole with metamaterial nanoslab.
- Metamaterials: a new frontier of science and technology.
- Wire Metamaterials: Physics and Applications
- Design and fabrication of a 3D-structured gold film with nanopores for local electric field enhancement in the pore
- Tailoring electromagnetically induced transparency with different coupling mechanisms
- Transmission-Type 2-Bit Programmable Metasurface for Single-Sensor and Single-Frequency Microwave Imaging
- Generation of a sub-diffraction hollow ring by shaping an azimuthally polarized wave
- Two-dimensional Fibonacci grating for far-field super-resolution imaging
- Implementing Quantum Search Algorithm with Metamaterials
- Surface Plasmon Resonance Sensors on Raman and Fluorescence Spectroscopy
- Multiphysical Digital Coding Metamaterials for Independent Control of Broadband Electromagnetic and Acoustic Waves with a Large Variety of Functions.
- Studies on metal-dielectric plasmonic structures.
- Photonic Crystals For Optofluidic Transport, Trapping And Biosensing
- Negative Refractive Index Metamaterials: Principles and Applications
- Demonstration and Modeling of Material Responses Achieved Through Contradirectional Coupling
- Super-resolution Properties of the Maxwell Fish-Eyes
- Microwave transmission-line networks for backward-wave media and reduction of scattering
- Disorder-enhanced imaging with spatially controlled light
Related papers
- Zero refraction in natural materials and the mechanism of metal superlens
- Toward conventional-optical-lens-like superlenses
- Roadmap for label-free imaging with microsphere superlens and metamaterial solid immersion lens
- Superlens coupling to object and image: A secondary resonance mechanism to improve single-negative imaging of electromagnetic waves
- Rapid growth of evanescent wave by a silver superlens
- Research on imaging principles of a silver superlens
- Dual-metasurface superlens: A comprehensive study