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GAP SURFACE-PLASMON

  • Gap surface plasmon
  • A gap surface plasmon (or gap plasmon) is a guided electromagnetic wave which propagates in a transparent medium located between two extremely close metallic

    Gap surface plasmon

    Gap surface plasmon

    Gap_surface_plasmon

  • Surface plasmon
  • Coherent delocalized electron oscillations

    Surface plasmons (SPs) are coherent delocalized electron oscillations that exist at the interface between any two materials where the real part of the

    Surface plasmon

    Surface plasmon

    Surface_plasmon

  • Surface plasmon resonance microscopy
  • Surface plasmon resonance microscopy (SPRM), also called surface plasmon resonance imaging (SPRI), is a label free analytical tool that combines the surface

    Surface plasmon resonance microscopy

    Surface_plasmon_resonance_microscopy

  • Plasmon coupling
  • smaller interparticle gap and larger cluster size. Plasmon coupling can also cause the electric field in the interparticle gap to be boosted by several

    Plasmon coupling

    Plasmon_coupling

  • Pines' demon
  • Quasiparticle in condensed matter physics

    (such as graphene) and surface plasmons, the term acoustic plasmon has taken on a very different meaning as the ordinary plasmon in a low-dimensional system

    Pines' demon

    Pines'_demon

  • Surface-enhanced Raman spectroscopy
  • Spectroscopic technique

    nanoclusters with considerable band gaps, because surface plasmon appears only in metal surface with near-zero band gaps. This chemical mechanism probably

    Surface-enhanced Raman spectroscopy

    Surface-enhanced Raman spectroscopy

    Surface-enhanced_Raman_spectroscopy

  • Mario Rocca
  • Italian experimental physicist

    experimental measurement of surface phonon spectra, conventional and acoustic surface plasmon dispersion, and gas surface interaction. Mario Rocca graduated

    Mario Rocca

    Mario_Rocca

  • Rabi splitting
  • Energy level splitting due to strong light-matter coupling

    K. (2009). "Vacuum Rabi splitting and strong-coupling dynamics for surface-plasmon polaritons". Physical Review Letters. 103 (5) 053602. doi:10.1103/PhysRevLett

    Rabi splitting

    Rabi_splitting

  • Plexciton
  • Direct energy flows

    metallic film (plasmons). Dirac cones appeared in the plexcitons' two-dimensional band-structure. An external magnetic field created a gap between the cones

    Plexciton

    Plexciton

  • Contact lithography
  • Lithography technique

    the metal surface of the mask may not disturb the gap but can still alter the evanescent wave distribution or destroy the surface plasmon interference

    Contact lithography

    Contact_lithography

  • Raman spectroscopy
  • Spectroscopic technique

    observe other low frequency excitations of a solid, such as plasmons, magnons, and superconducting gap excitations. Distributed temperature sensing (DTS) uses

    Raman spectroscopy

    Raman spectroscopy

    Raman_spectroscopy

  • Plasmonics
  • Use of plasmons for data transmission in circuits

    dielectric loaded surface plasmon polariton (DLSPP), gap plasmon polariton (GPP), channel plasmon polariton (CPP), wedge surface plasmon polariton (wedge)

    Plasmonics

    Plasmonics

    Plasmonics

  • Nanophotonic resonator
  • Optical Cavity

    internal reflection, distributed Bragg reflection, a photonic band gap, surface plasmon resonance, destructive interference between radiation channels, or

    Nanophotonic resonator

    Nanophotonic_resonator

  • Spaser
  • Laser that uses surface plasmon polaritons

    by storing some of the light energy in electron oscillations called surface plasmon polaritons. The phenomenon was first described by David J. Bergman

    Spaser

    Spaser

  • Plasmonic nanoparticle
  • the material size. What differentiates these particles from normal surface plasmons is that plasmonic nanoparticles also exhibit interesting scattering

    Plasmonic nanoparticle

    Plasmonic nanoparticle

    Plasmonic_nanoparticle

  • Surface acoustic wave
  • Sound wave which travels along the surface of an elastic material

    Linear elasticity Love wave Phonon Picosecond ultrasonics Rayleigh wave Surface plasmon polariton Ultrasound Applied Solid State Physics Laboratory - Hokkaido

    Surface acoustic wave

    Surface acoustic wave

    Surface_acoustic_wave

  • Nanolaser
  • Laser that has nanoscale dimensions

    Stockman first proposed amplified surface plasmon waves by stimulated emission and coined the term spaser as "surface plasmon amplification by stimulated emission

    Nanolaser

    Nanolaser

  • Nanophotonics
  • Study of light on the nanometer scale

    nanometer scale using other techniques like, for example, surface plasmons, localized surface plasmons around nanoscale metal objects, and the nanoscale apertures

    Nanophotonics

    Nanophotonics

  • Cathodoluminescence
  • Photon emission under the impact of an electron beam

    microscopes is also being used to study surface plasmon resonances in metallic nanoparticles. Surface plasmons in metal nanoparticles can absorb and emit

    Cathodoluminescence

    Cathodoluminescence

    Cathodoluminescence

  • Nanoparticle interfacial layer
  • Interfacial layer of nanoparticles

    certain specific short chain ligands tend to dampen the surface plasmon resonance effects. Plasmon resonance can be used to analyze the surfactants of the

    Nanoparticle interfacial layer

    Nanoparticle interfacial layer

    Nanoparticle_interfacial_layer

  • Plasmonic solar cell
  • Type of solar cell

    scattering light using metal nano-particles excited at their localized surface plasmon resonance. Plasmonic core-shell nanoparticles located in the front

    Plasmonic solar cell

    Plasmonic_solar_cell

  • Tip-enhanced Raman spectroscopy
  • (STM-TERS) has also become a reliable technique, since it utilizes the gap mode plasmon between the metallic probe and the metallic substrate. Tip-enhanced

    Tip-enhanced Raman spectroscopy

    Tip-enhanced_Raman_spectroscopy

  • Phonon polariton
  • Quasiparticle form phonon and photon coupling

    phonons, and light, resulting in an electromagnetic surface wave. They are similar to surface plasmon polaritons, although studied to a far lesser extent

    Phonon polariton

    Phonon polariton

    Phonon_polariton

  • Polariton
  • Quasiparticles arising from EM wave coupling

    terahertz photon with an intersubband excitation Surface plasmon polaritons result from coupling of surface plasmons with light (the wavelength depends on the

    Polariton

    Polariton

    Polariton

  • Terahertz radiation
  • Range 300-3000 GHz of the electromagnetic spectrum

    Mitrofanov, Oleg (3 February 2011). "Imaging of terahertz surface plasmon waves excited on a gold surface by a focused beam". Optics Express. 19 (4): 3212–3217

    Terahertz radiation

    Terahertz radiation

    Terahertz_radiation

  • Hybrid plasmonic waveguide
  • Type of optical waveguide

    diffraction. Plasmonic waveguides, on the other hand, use surface plasmon to confine light near a metal surface. The light confinement ability of plasmonic waveguides

    Hybrid plasmonic waveguide

    Hybrid plasmonic waveguide

    Hybrid_plasmonic_waveguide

  • Giulia Tagliabue
  • Italian mechanical engineer

    Prineha; Atwater, Harry A. (23 August 2018). "Quantifying the role of surface plasmon excitation and hot carrier transport in plasmonic devices". Nature

    Giulia Tagliabue

    Giulia Tagliabue

    Giulia_Tagliabue

  • Ligand (biochemistry)
  • Substance that forms a complex with a biomolecule

    often label-free, such as surface plasmon resonance, dual-polarization interferometry and multi-parametric surface plasmon resonance (MP-SPR) can not

    Ligand (biochemistry)

    Ligand (biochemistry)

    Ligand_(biochemistry)

  • Päivi Törmä
  • Finnish professor of physics

    (2009-07-31). "Vacuum Rabi Splitting and Strong-Coupling Dynamics for Surface-Plasmon Polaritons and Rhodamine 6G Molecules". Physical Review Letters. 103

    Päivi Törmä

    Päivi Törmä

    Päivi_Törmä

  • Tunable metamaterial
  • including localized surface plasmon resonances and surface lattice resonances in periodic arrays of nanoparticles, Tamm plasmon resonances, and others

    Tunable metamaterial

    Tunable metamaterial

    Tunable_metamaterial

  • Graphene
  • Hexagonal lattice made of carbon atoms

    techniques for determining the fine-structure constant. Multi-parametric surface plasmon resonance has been utilized to characterize both the thickness and

    Graphene

    Graphene

    Graphene

  • Atomic electron transition
  • Change of an electron between energy levels within an atom

    Instantaneous, Take Time". Quanta Magazine. Retrieved June 6, 2019. "Surface plasmon at a metal-dielectric interface with an epsilon-near-zero transition

    Atomic electron transition

    Atomic electron transition

    Atomic_electron_transition

  • Solid-state chemistry
  • Study of solid materials' properties and composition

    electromagnetic field are called surface plasmon resonances. The excitation wavelength and frequency of the plasmon resonances provide information on

    Solid-state chemistry

    Solid-state chemistry

    Solid-state_chemistry

  • Metamaterial antenna
  • Class of antennas

    earlier discovery of plasmons created the view that metal at plasmon frequency fp is a composite material. The effect of plasmons on any metal sample is

    Metamaterial antenna

    Metamaterial antenna

    Metamaterial_antenna

  • Prism (optics)
  • Transparent optical element with flat, polished surfaces that refract light

    microscopy. In particular: Prisms are used to couple propagating light to surface plasmons. Either the hypotenuse of a triangular prism is metallized (Kretschmann

    Prism (optics)

    Prism (optics)

    Prism_(optics)

  • List of plasma physics articles
  • Surface-wave-sustained mode Surface enhanced Raman spectroscopy Surface plasmon Surface plasmon polaritons Surface plasmon resonance Suspension plasma spray Synchrotron

    List of plasma physics articles

    List_of_plasma_physics_articles

  • Gold cluster
  • development of completely optical devices. The wavelength of this surface plasmon resonance (SPR) band depends on the size and shape of the nanoparticles

    Gold cluster

    Gold_cluster

  • Superlens
  • Type of transmissive optical device

    achieved. By designing the thin metal slab so that the surface current oscillations (the surface plasmons) match the evanescent waves from the object, the superlens

    Superlens

    Superlens

  • Vladimir Shalaev
  • American optical physicist

    random composites are related to localization of surface plasmons.− These localized surface plasmon modes in random systems are sometimes referred to

    Vladimir Shalaev

    Vladimir Shalaev

    Vladimir_Shalaev

  • Template-guided self-assembly
  • Fabrication process

    (2013-07-03). "Tailoring Plasmon Coupling in Self-Assembled One-Dimensional Au Nanoparticle Chains through Simultaneous Control of Size and Gap Separation". The

    Template-guided self-assembly

    Template-guided_self-assembly

  • Ravindra Kumar Sinha (physicist)
  • Indian physicist and administrator

    046011. S2CID 126164310. Dillu, Venus; Sinha, R. K. (2013). "Surface Plasmon Polariton Band Gap-Enabled Plasmonic Mach–Zehnder Interferometer: Design, Analysis

    Ravindra Kumar Sinha (physicist)

    Ravindra Kumar Sinha (physicist)

    Ravindra_Kumar_Sinha_(physicist)

  • Photonic crystal
  • Periodic optical nanostructure that affects the motion of photons

    This structure can act as a far-IR filter and can support low-loss surface plasmons for waveguide and sensing applications. 1D photonic crystals doped

    Photonic crystal

    Photonic crystal

    Photonic_crystal

  • Cherenkov radiation
  • Electromagnetic radiation from a charged particle in a medium

    Blanchard, R.; Capasso, F. (2015). "Controlled steering of Cherenkov surface plasmon wakes with a one-dimensional metamaterial". Nature Nanotechnology.

    Cherenkov radiation

    Cherenkov radiation

    Cherenkov_radiation

  • Resonance Raman spectroscopy
  • Raman spectroscopy technique

    a laser matching the surface plasmon resonance of the nanoparticles is used as source. If the wavelength of the surface plasmon matches that of an electronic

    Resonance Raman spectroscopy

    Resonance Raman spectroscopy

    Resonance_Raman_spectroscopy

  • Luminescent solar concentrator
  • Device for concentrating solar radiation using luminescence

    probability of transition from the ground state to the excited state of surface plasmons increases efficiency. Luminescent solar concentrators could be used

    Luminescent solar concentrator

    Luminescent solar concentrator

    Luminescent_solar_concentrator

  • Mikhail Dyakonov
  • Physicist

    hyperspace for plasmons: Dyakonov states in metamaterials Appl. Phys. Lett. 93, 221109 (2008)[1] Moradi, M. et al. Terahertz Dyakonov surface waves in plasma

    Mikhail Dyakonov

    Mikhail_Dyakonov

  • OLED
  • Diode that emits light from an organic compound

    (1 June 2016). "Bulk-like Al/Ag bilayer film due to suppression of surface plasmon resonance for high transparent organic light emitting diodes". Organic

    OLED

    OLED

    OLED

  • Nanoparticle
  • Particle with size less than 100 nm

    scattering with enhanced forward scattering on a silicon substrate when surface plasmon is located in front of a solar cell. Nanoparticles of sufficiently

    Nanoparticle

    Nanoparticle

    Nanoparticle

  • List of quasiparticles
  • the surface. Surface plasmon A coherent excitation of a plasma at the surface of a metal. Surface plasmon polariton Coupling between surface plasmons and

    List of quasiparticles

    List_of_quasiparticles

  • Silver nanoparticle
  • Ultrafine particles of silver between 1 nm and 100 nm in size

    microscopy instruments. Nanoparticles synthesized in the substrate exhibit surface plasmon resonances as evidenced by characteristic absorption bands; these features

    Silver nanoparticle

    Silver nanoparticle

    Silver_nanoparticle

  • Photothermal therapy
  • Potential cancer treatment

    the oscillation reaches its maximum, this frequency is called the surface plasmon resonance (SPR). AuNR have two SPR spectrum bands: one in the NIR region

    Photothermal therapy

    Photothermal_therapy

  • Solar cell
  • Device used to produce electricity from light

    (bound electron-hole pairs), unbound electron-hole pairs (via excitons), or plasmons. The separation of charge carriers of opposite types. The separate extraction

    Solar cell

    Solar cell

    Solar_cell

  • 9-track tape
  • Magnetic tape format introduced by IBM in 1964

    Innovative Data Technology (IDT/Alston) Laser Magnetic Storage / Philips LMS / Plasmon LMS M4 Data Overland Data PerkinElmer Pertec Computer Qualstar SE Labs

    9-track tape

    9-track tape

    9-track_tape

  • Fiveling
  • Five crystals arranged around a common axis

    different catalytic reactivity. It is known that the response of the surface plasmon polaritons in nanoparticles depends upon their shape. As a consequence

    Fiveling

    Fiveling

    Fiveling

  • Dieter Pohl (physicist)
  • German physicist

    D. W. (1996). "Local Excitation, Scattering, and Interference of Surface Plasmons". Physical Review Letters. 77 (9): 1889–1892. Bibcode:1996PhRvL..77

    Dieter Pohl (physicist)

    Dieter Pohl (physicist)

    Dieter_Pohl_(physicist)

  • Ellipsometry
  • Optical technique for characterizing thin films

    (IRSE) can probe lattice vibrational (phonon) and free charge carrier (plasmon) properties. Spectroscopic ellipsometry in the near infrared, visible up

    Ellipsometry

    Ellipsometry

    Ellipsometry

  • YAMBO code
  • willingness or preference. Yambo can calculate: Quasiparticle energies: plasmon pole, COHSEX approximation, or real-axis Lifetimes within the GW approximation

    YAMBO code

    YAMBO_code

  • Eleftherios Economou
  • of theoretical condensed matter physics, starting with the study of surface plasmons during his thesis in 1969. Economou influenced the evolution of theoretical

    Eleftherios Economou

    Eleftherios Economou

    Eleftherios_Economou

  • Bio-MEMS
  • Microtechnology

    chemiluminescence. Surface plasmon resonance sensors can be thin-film refractometers or gratings that measure the resonance behaviour of surface plasmon on metal

    Bio-MEMS

    Bio-MEMS

    Bio-MEMS

  • Mott insulator
  • Electrical insulators that are conventionally expected to be conductors

    S2CID 205214473. Markiewicz, R. S.; Hasan, M. Z.; Bansil, A. (2008-03-25). "Acoustic plasmons and doping evolution of Mott physics in resonant inelastic x-ray scattering

    Mott insulator

    Mott insulator

    Mott_insulator

  • Characterization of nanoparticles
  • Measurement of physical and chemical properties of nanoparticles

    Semiconductor quantum dots are fluorescent and metal nanoparticles exhibit surface plasmon absorbances, making both amenable to ultraviolet–visible spectroscopy

    Characterization of nanoparticles

    Characterization of nanoparticles

    Characterization_of_nanoparticles

  • Potential applications of graphene
  • operate efficiently at millimeter radio wavelengths. The wavelength of surface plasmon polaritons for a given frequency is several hundred times smaller than

    Potential applications of graphene

    Potential_applications_of_graphene

  • Covellite
  • Sulfide mineral

    Localized surface plasmon resonances observed in covellite nanoparticles have recently been linked to the stoichiometry-dependent band gap key for nanocrystals

    Covellite

    Covellite

    Covellite

  • Metamaterial
  • Materials engineered to have properties that have not yet been found in nature

    couples with the surface plasmons to create self-sustaining, propagating electromagnetic waves or surface waves known as surface plasmon polaritons. Bulk

    Metamaterial

    Metamaterial

    Metamaterial

  • Nanocluster
  • Collection of bound atoms or molecules

    optical reflectors and metal nanoparticles display intense colors due to surface plasmon resonance. However, when the size of metal nanoclusters is further

    Nanocluster

    Nanocluster

  • Emily A. Carter
  • American chemist

    “Methanol Adsorption and Dissociation on GaP(110) Studied by Ambient Pressure X-ray Photoelectron Spectroscopy,” Surface Science, 758, 122743 (2025). Part of

    Emily A. Carter

    Emily A. Carter

    Emily_A._Carter

  • Janus particles
  • Type of nanoparticle or microparticle

    nanoparticles stabilised by mixed ligand shell: a striking blue shift of the surface-plasmon band evidencing the formation of Janus nanoparticles". Journal of Materials

    Janus particles

    Janus particles

    Janus_particles

  • Fourth Industrial Revolution
  • 2010s–present technological convergence era

    limit of concentration and adsorption measurements by laser-induced surface-plasmon resonance, Appl. Opt. 36 (1997) 6539–6547 Arnold, H.: Kommentar Industrie

    Fourth Industrial Revolution

    Fourth Industrial Revolution

    Fourth_Industrial_Revolution

  • Electron diffraction
  • Bending of electron beams due to electrostatic interactions with matter

    diffraction, liquids, surfaces using lower energy electrons, a technique called LEED, and by reflecting electrons off surfaces, a technique called RHEED

    Electron diffraction

    Electron diffraction

    Electron_diffraction

  • Faraday effect
  • Physical magneto-optical phenomenon

    doi:10.1021/acs.jpcc.9b00607. S2CID 109432365. Cohen, Adam (2009). "Surface Plasmon Resonance Enhanced Magneto-optics(SuPREMO): Faraday Rotation Enhancement

    Faraday effect

    Faraday_effect

  • Quantum dot
  • Nano-scale semiconductor particles

    produced by gold nanoparticles, which then can be observed from the surface plasmon resonance in the photoluminescent excitation spectrum of (CdSe)ZnS

    Quantum dot

    Quantum dot

    Quantum_dot

  • Jellium
  • Physical model of solid metals as electron gases

    can qualitatively reproduce features of real metals such as screening, plasmons, Wigner crystallization and Friedel oscillations. At zero temperature,

    Jellium

    Jellium

  • Harry Atwater
  • Professor of applied physics / materials science

    electromagnetic energy transport below the diffraction limit in metal nanoparticle plasmon waveguides". Nature Materials. 2 (4): 229–232. Bibcode:2003NatMa...2..229M

    Harry Atwater

    Harry Atwater

    Harry_Atwater

  • Exciton
  • Quasiparticle which is a bound state of an electron and an electron hole

    behavior with distinct quantum properties. Orbiton Oscillator strength Plasmon Polariton superfluid Trion Knox, R. S. (1963). Seitz and Turnbul (ed.)

    Exciton

    Exciton

    Exciton

  • Dirac matter
  • Condensed matter system

    move along the surface of the material. In the bulk of a non-interacting topological insulator, the Fermi level is positioned within the gap between the

    Dirac matter

    Dirac_matter

  • Dye-sensitized solar cell
  • Type of thin-film solar cell

    Schlaepfer and Catherine Bolle. Researchers have investigated the role of surface plasmon resonances present on gold nanorods in the performance of dye-sensitized

    Dye-sensitized solar cell

    Dye-sensitized solar cell

    Dye-sensitized_solar_cell

  • Introduction to Solid State Physics
  • Classic textbook in by Charles Kittel

    theorem, crystals, magnetism, phonons, Fermi gases, magnetic resonance, and surface physics. The chapters are broken into sections that highlight the topics

    Introduction to Solid State Physics

    Introduction_to_Solid_State_Physics

  • List of Clarivate Citation laureates in Physics
  • transmission of light through subwavelength holes, which ignited the field of surface plasmon photonics." University of Strasbourg Institute of Science and Supramolecular

    List of Clarivate Citation laureates in Physics

    List_of_Clarivate_Citation_laureates_in_Physics

  • Mesoscopic physics
  • Subdiscipline of condensed matter physics

    the band gap. This region is an energy range in which no electron states exist. A smaller amount have energy levels above the forbidden gap, and this

    Mesoscopic physics

    Mesoscopic physics

    Mesoscopic_physics

  • Nanomaterials
  • Materials with granular size 1 to 100 nm

    are observed such as quantum confinement in semiconductor particles, surface plasmon resonance in some metal particles, and superparamagnetism in magnetic

    Nanomaterials

    Nanomaterials

    Nanomaterials

  • Gold
  • Chemical element with atomic number 79 (Au)

    the exact roles of the bulk electronic-band structure and that of surface plasmons have not yet been worked out. Jewellery Alloys. World Gold Council

    Gold

    Gold

    Gold

  • Split-ring resonator
  • Structure in some metamaterials

    Hendry, E.; Sambles, J. R.; Barnes, W. L. (2009-12-23). "Localized surface-plasmon resonances and negative refractive index in nanostructured electromagnetic

    Split-ring resonator

    Split-ring resonator

    Split-ring_resonator

  • Upconverting nanoparticles
  • Photoluminescent particles

    relaxation. Additionally, techniques such as organic dye sensitization, surface plasmon coupling, dielectric superlensing modulation, and resonant dielectric

    Upconverting nanoparticles

    Upconverting_nanoparticles

  • Thiolate-protected gold cluster
  • clusters from gold nanoparticles, whose optical characteristics are driven by Plasmon resonance. Some of thiolate-protected clusters' properties can be described

    Thiolate-protected gold cluster

    Thiolate-protected gold cluster

    Thiolate-protected_gold_cluster

  • Density of states
  • Number of available physical states per energy unit

    within the band gap of the material. This condition also means that an electron at the conduction band edge must lose at least the band gap energy of the

    Density of states

    Density of states

    Density_of_states

  • Photonic metamaterial
  • Type of electromagnetic metamaterial

    Bogdanov A., and Lavrinenko, A. (2018). "Experimental observation of Dyakonov plasmons in the mid-infrared" (PDF). Semiconductors. 52 (4): 442–6. Bibcode:2018Semic

    Photonic metamaterial

    Photonic metamaterial

    Photonic_metamaterial

  • Resonance
  • Physical characteristic of oscillating systems

    laser. Additional optical resonances are guided-mode resonances and surface plasmon resonance, which result in anomalous reflection and high evanescent

    Resonance

    Resonance

    Resonance

  • Index of physics articles (S)
  • plasmon Surface plasmon polaritons Surface plasmon resonance Surface power density Surface reconstruction Surface science Surface selection rule Surface states

    Index of physics articles (S)

    Index_of_physics_articles_(S)

  • Quantum cascade detector
  • Photodetector sensitive to infrared radiation

    to surface plasmon polaritons, a type of surface wave that propagates along the metal-semiconductor interface. Being TM-polarized, surface plasmon polaritons

    Quantum cascade detector

    Quantum cascade detector

    Quantum_cascade_detector

  • Fracton (subdimensional particle)
  • Theoretical subdimensional particle

    identified in various CSS codes as well as in symmetric tensor gauge theories. Gapped fracton models often feature a topological ground state degeneracy that

    Fracton (subdimensional particle)

    Fracton_(subdimensional_particle)

  • Optical tweezers
  • Scientific instruments

    ISSN 1948-7185. PMID 37561048. Volpe G, Quidant R, Badenes G, Petrov D (2006). "Surface Plasmon Radiation Forces". Physical Review Letters. 96 (23) 238101. Bibcode:2006PhRvL

    Optical tweezers

    Optical tweezers

    Optical_tweezers

  • Ji-Xin Cheng
  • Academic, inventor, and entrepreneur

    nanorods on tumor cells and established that plasmon-resonant gold nanorods, with carefully modified surface chemistry, have the potential for use in image-guided

    Ji-Xin Cheng

    Ji-Xin Cheng

    Ji-Xin_Cheng

  • Transparent conducting film
  • Optically transparent and electrically conductive material

    doi:10.1038/40087. Dominici, L; Michelotti, F; Brown, TM; et al. (2009). "Plasmon polaritons in the near infrared on fluorine doped tin oxide films". Optics

    Transparent conducting film

    Transparent conducting film

    Transparent_conducting_film

  • World Wireless System
  • Proposed telecommunications and electrical power delivery system by Nikola Tesla

    December 1, 1914. energy portal Wireless energy transmission Surface plasmon Surface-wave-sustained mode Transmission medium Distributed generation

    World Wireless System

    World Wireless System

    World_Wireless_System

  • Phonon
  • Quasiparticle of mechanical vibrations

    India: Elsevier. p. 201. ISBN 978-93-80931-89-0. "Tunneling across a tiny gap". News.mit.edu. 7 April 2015. Retrieved 13 August 2019. Feynman, Richard

    Phonon

    Phonon

  • Terahertz metamaterial
  • pairs metallic nanorods in parallel. This work is also complemented by surface plasmon studies in the terahertz regime. Work also continues with studies of

    Terahertz metamaterial

    Terahertz metamaterial

    Terahertz_metamaterial

  • Topological order
  • Type of order at absolute zero

    degeneracy (which can be defined on a closed space or an open space with gapped boundaries, including both Abelian topological orders and non-Abelian topological

    Topological order

    Topological order

    Topological_order

  • Negative-index metamaterial
  • Material with a negative refractive index

    negative-index metamaterials, but based on the enhancements for imaging with surface plasmons. In another direction researchers explored paraxial approximations

    Negative-index metamaterial

    Negative-index metamaterial

    Negative-index_metamaterial

  • Nanosponges
  • Porous nanoparticle, often a synthesised carbon-containing polymer

    enhancement is required. If a molecule is bound to a metal surface, incident light excites the surface plasmons, inducing polarization in the bound molecules, increasing

    Nanosponges

    Nanosponges

  • Drude model
  • Model of electrical conduction

    _{0}m}}}} The plasma frequency represents a plasma oscillation resonance or plasmon. The plasma frequency can be employed as a direct measure of the square

    Drude model

    Drude model

    Drude_model

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