Ultrashort filaments of light in weakly-ionized, optically-transparent media
arXiv:physics/0612063 · doi:10.1088/0034-4885/70/10/R03
Abstract
Modern laser sources nowadays deliver ultrashort light pulses reaching few cycles in duration, high energies beyond the Joule level and peak powers exceeding several terawatt (TW). When such pulses propagate through optically-transparent media, they first self-focus in space and grow in intensity, until they generate a tenuous plasma by photo-ionization. For free electron densities and beam intensities below their breakdown limits, these pulses evolve as self-guided objects, resulting from successive equilibria between the Kerr focusing process, the chromatic dispersion of the medium, and the defocusing action of the electron plasma. Discovered one decade ago, this self-channeling mechanism reveals a new physics, widely extending the frontiers of nonlinear optics. Implications include long-distance propagation of TW beams in the atmosphere, supercontinuum emission, pulse shortening as well as high-order harmonic generation. This review presents the landmarks of the 10-odd-year progress in this field. Particular emphasis is laid to the theoretical modeling of the propagation equations, whose physical ingredients are discussed from numerical simulations. Differences between femtosecond pulses propagating in gaseous or condensed materials are underlined. Attention is also paid to the multifilamentation instability of broad, powerful beams, breaking up the energy distribution into small-scale cells along the optical path. The robustness of the resulting filaments in adverse weathers, their large conical emission exploited for multipollutant remote sensing, nonlinear spectroscopy, and the possibility to guide electric discharges in air are finally addressed on the basis of experimental results.
50 pages, 38 figures
References in corpus (1)
Cited by in corpus (61)
- Hawking radiation from ultrashort laser pulse filaments
- Higher-order Kerr terms allow ionization-free filamentation in gases
- Laser-guided lightning
- Boosting terahertz generation in laser-field ionized gases using a sawtooth wave shape
- Transition from plasma- to Kerr-driven laser filamentation
- Generalized Miller Formulae
- Nonlinear propagation of light in structured media: generalized unidirectional pulse propagation equations
- High-field quantum calculation reveals time-dependent negative Kerr contribution
- Temporal self-restoration of compressed optical filaments
- High repetition rate ultrashort laser cuts a path through fog
- Filamentation of ultrashort laser pulses in silica glass and KDP crystal: A comparative study
- Supercontinuum generation of ultrashort laser pulses in air at different central wavelengths
- Sensitivity of propagation and energy deposition in femtosecond filamentation to the nonlinear refractive index
- Spectral dependence of purely-Kerr driven filamentation in air and argon
- Non-Gaussian Statistics of Multiple Filamentation
- A flexible, fast and benchmarked vectorial model for focused laser beams
- Spatially homogeneous few-cycle compression of Yb lasers via all-solid-state free-space soliton management
- Structured air lasing of N2+
- Transverse Ultrafast Laser Inscription in Bulk Silicon
- Shaping convex edges in borosilicate glass by single pass perforation with an Airy beam
- Atmospheric aerosol clearing by femtosecond filaments
- Conductivity and Discharge Guiding Properties of Mid-IR Laser Filaments
- Arbitrary-order non-linear contribution to self-steepening
- Molecular Quantum Wakes for Clearing Fog
- Air hydrodynamics of the ultrafast laser-triggered spark gap
- Spectral self-action of THz emission from ionizing two-color laser pulses in gases
- HV discharge acceleration by sequences of UV laser filaments with visible and near-infrared pulses
- Powerful supercontinuum vortices generated by femtosecond vortex beams with thin plates
- Molecular alignment and filamentation: comparison between weak and strong field models
- Triggering filamentation using turbulence
- Saturable Lorentz model for fully explicit three-dimensional modeling of nonlinear optics
- High-power sub-picosecond filamentation at 1.03 μm with high repetition rates between 10 and 100 kHz
- Nonlinear combining of laser beams
- Propagation of ultra-short, resonant, ionizing laser pulses in rubidium vapor
- Sound emission from the gas of molecular superrotors
- The fundamental solution of the unidirectional pulse propagation equation
- HV discharges triggered by dual- and triple-frequency laser filaments
- Ultrafast laser welding of silicon
- Phase-matched high-order harmonic generation in pre-ionized noble gases
- Dual-scale turbulence in filamenting laser beams at high average power
- Curved plasma channels: Kerr lens and Airy prism
- Few-cycle vortex beam generated from self-compression of mid-infrared femtosecond vortex beam in thin plates
- Generation of 10-m-lengthscale plasma columns by resonant and off-resonant laser pulses
- Space-time resolved simulation of femtosecond nonlinear light-matter interactions using a holistic quantum atomic model: Application to near-threshold harmonics
- Air-photonics terahertz platform with versatile micro-controller based interface and data acquisition
- The universality of filamentation-caused challenges of ultrafast laser energy deposition in semiconductors
- Delayed ionization and excitation dynamics in a filament wake channel in dense gas medium
- Ab-initio calculations of laser-atom interactions reveal harmonics feedback during macroscopic propagation
- High-energy tunable ultraviolet pulses generated by optical leaky wave in filamentation
- Near infrared few-cycle pulses for high harmonic generation
- Modulational instability windows in the nonlinear Schrödinger equation involving higher-order Kerr responses
- Shockwave-assisted laser filament conductivity
- Two statistical regimes in the transition to filamentation
- Counting the electrons in a multiphoton ionization by elastic scattering of microwaves
- Physics and technology of Laser Lightning Control
- Reverse design of the ideal pulse for hollow capillary fiber post-compression schemes
- Linearity of charge measurement in laser filaments
- Exact and approximate symmetries for light propagation equations with higher order nonlinearity
- Long range propagation of ultrafast, ionizing laser pulses in a resonant nonlinear medium
- Mid-infrared laser filaments in the atmosphere
- Wavelength dependence of laser pulse filamentation in the close spectral vicinity of atomic resonances