Advances in ultrafast plasmonics
arXiv:2211.08241 · doi:10.1063/5.0134993
Abstract
In the past twenty years, we have reached a broad understanding of many light-driven phenomena in nanoscale systems. The temporal dynamics of the excited states are instead quite challenging to explore, and, at the same time, crucial to study for understanding the origin of fundamental physical and chemical processes. In this review we examine the current state and prospects of ultrafast phenomena driven by plasmons both from a fundamental and applied point of view. This research area is referred to as ultrafast plasmonics and represents an outstanding playground to tailor and control fast optical and electronic processes at the nanoscale, such as ultrafast optical switching, single photon emission and strong coupling interactions to tailor photochemical reactions. Here, we provide an overview of the field, and describe the methodologies to monitor and control nanoscale phenomena with plasmons at ultrafast timescales in terms of both modeling and experimental characterization. Various directions are showcased, among others recent advances in ultrafast plasmon-driven chemistry and multi-functional plasmonics, in which charge, spin, and lattice degrees of freedom are exploited to provide active control of the optical and electronic properties of nanoscale materials. As the focus shifts to the development of practical devices, such as all-optical transistors, we also emphasize new materials and applications in ultrafast plasmonics and highlight recent development in the relativistic realm. The latter is a promising research field with potential applications in fusion research or particle and light sources providing properties such as attosecond duration.
References in corpus (37)
- How to face the loss in plasmonics and metamaterials
- All-optical control of ferromagnetic thin films and nanostructures
- Attosecond control of electrons emitted from a nanoscale metal tip
- Challenges in Plasmonic Catalysis
- Attosecond Electron Pulse Trains and Quantum State Reconstruction in Ultrafast Transmission Electron Microscopy
- Attosecond physics at the nanoscale
- Temporal and spectral fingerprints of ultrafast all-coherent spin switching
- The marriage of plasmonics, magnetism, acoustics and ultrafast optics
- Atomically thin mirrors made of monolayer semiconductors
- Theoretical Challenges in Polaritonic Chemistry
- Integrated photonics enables continuous-beam electron phase modulation
- Experimental and ab initio ultrafast carrier dynamics in plasmonic nanoparticles
- All-optical polarization and amplitude modulation of second-harmonic generation in atomically thin semiconductors
- Cavity-mediated electron-photon pairs
- Ultralow Threshold Polariton Condensate in a Monolayer Semiconductor Microcavity at Room Temperature
- Towards compact phase-matched and waveguided nonlinear optics in atomically layered semiconductors
- Magnetoplasmonic design rules for active magneto-optics
- Plasmonic Nanostars with Hot Spots for Efficient Generation of Hot Electrons under Solar Illumination
- Attosecond Field Emission
- Sub-diffraction sub-100 ps all-optical magnetic switching by passive wavefront shaping
- Strong coupling with light enhances the photoisomerization quantum yield of azobenzene
- Beaming of helical light from plasmonic vortices via adiabatically tapered nanotip
- Magnetoplasmonics: current challenges and future opportunities
- Tailored high-contrast attosecond electron pulses for coherent excitation and scattering
- Nanoscale transient magnetization gratings excited and probed by femtosecond extreme ultraviolet pulses
- Thermometric Calibration of the Ultrafast Relaxation Dynamics in Plasmonic Au Nanoparticles
- Time-dependent screening explains the ultrafast excitonic signal rise in 2D semiconductors
- Inverse-Faraday effect from the orbital angular momentum of light
- Photoinduced Temperature Gradients in Sub-wavelength Plasmonic Structures: The Thermoplasmonics of Nanocones
- Atomic-scale structural fluctuations of a plasmonic cavity
- Dynamical evolution of the Schottky barrier as a determinant contribution to electron-hole pair stabilization and photocatalysis of plasmon-induced hot carriers
- Sub-ps thermionic electron injection effects on exciton-formation dynamics at a van der Waals semiconductor/metal interface
- Magnetic Control of Transmission and Helicity of Nano-Structured Optical Beams in Magnetoplasmonic Vortex Lenses
- The Connection Between Plasmon Decay Dynamics and the SERS background: Inelastic Scattering from Non-Thermal and Hot Carriers
- Hot-electron dynamics in plasmonic nanostructures
- Imprinting the quantum statistics of photons on free electrons
- Twisted light affects ultrafast demagnetization
Cited by in corpus (9)
- Hybrid plasmonic modes for enhanced refractive index sensing
- Resonant optical trapping of Janus nanoparticles in plasmonic nanoaperture
- Voltage-controlled extraordinary optical transmission in the visible regime
- Thermal transfer enhancement by hydrodynamic plasmons in electron bilayers
- Ultrafast interband transitions in nanoporous gold metamaterial
- Strong-field effects in the photo-induced dissociation of the hydrogen molecule on a silver nanoshell
- Light-matter interactions in layered materials and heterostructures: from moiré physics and magneto-optical effects to ultrafast dynamics and hybrid meta-photonics
- Anomalous frequency scaling of acoustic phonon damping in nickel cavities fabricated by ps-laser delamination
- Anisotropic hot carrier relaxation mediated by electron phonon scattering in TiN thin films