Optics Express, ISSN 1094-4087, 02/2014, Volume 22, Issue 4, pp. 3959 - 3967
We theoretically demonstrate a novel approach for generating Mid-InfraRed SuperContinuum (MIR SC) by using concatenated fluoride and chalcogenide glass fibers...
Journal Article
Physics Reports, ISSN 0370-1573, 01/2018, Volume 729, pp. 1 - 81
The quest towards the integration of ultra-fast, high-precision optical clocks is reflected in the large number of high-impact papers on the topic published in...
WHISPERING-GALLERY MODES | KERR FREQUENCY COMB | PHOTON PAIR GENERATION | SILICON-NITRIDE | PHYSICS, MULTIDISCIPLINARY | TEMPORAL CAVITY SOLITONS | WAVE-GUIDES | GROUP-VELOCITY DISPERSION | SUPERCONTINUUM GENERATION | MODULATIONAL-INSTABILITY | WAVELENGTH CONVERSION | Optics | Physics
WHISPERING-GALLERY MODES | KERR FREQUENCY COMB | PHOTON PAIR GENERATION | SILICON-NITRIDE | PHYSICS, MULTIDISCIPLINARY | TEMPORAL CAVITY SOLITONS | WAVE-GUIDES | GROUP-VELOCITY DISPERSION | SUPERCONTINUUM GENERATION | MODULATIONAL-INSTABILITY | WAVELENGTH CONVERSION | Optics | Physics
Journal Article
Applied Physics B, ISSN 0946-2171, 10/2004, Volume 79, Issue 6, pp. 673 - 677
Intense, well-controlled light pulses with only a few optical cycles start to play a crucial role in many fields of physics, such as attosecond science. We...
Physics | OPTICAL PULSES | PHYSICS, APPLIED | AMPLIFICATION | LIGHT FILAMENTS | FREQUENCY | HOLLOW-FIBER SUPERCONTINUUM | INTERFEROMETRY | AIR | COMPRESSION | OPTICS | ELECTRIC-FIELD RECONSTRUCTION | NONLINEAR OPTICS | Carriers | Pulse duration | Beams (radiation) | Computer simulation | Lasers | Gas pressure | Mathematical models | Optical pulses | Optics
Physics | OPTICAL PULSES | PHYSICS, APPLIED | AMPLIFICATION | LIGHT FILAMENTS | FREQUENCY | HOLLOW-FIBER SUPERCONTINUUM | INTERFEROMETRY | AIR | COMPRESSION | OPTICS | ELECTRIC-FIELD RECONSTRUCTION | NONLINEAR OPTICS | Carriers | Pulse duration | Beams (radiation) | Computer simulation | Lasers | Gas pressure | Mathematical models | Optical pulses | Optics
Journal Article
Journal of Lightwave Technology, ISSN 0733-8724, 12/2007, Volume 25, Issue 12, pp. 3770 - 3775
An efficient algorithm, which exhibits a fourth-order global accuracy, for the numerical solution of the normal and generalized nonlinear Schrodinger equations...
Supercontinuum generation | Optical fibers | Nonlinear equations | Optical solitons | Optical pulses | split-step Fourier method | Schrodinger equation | Optical propagation | nonlinear SchrÖdinger equation (NLSE) | numerical analysis | Fiber nonlinear optics | Optical pulse compression | supercontinuum radiation | Runge-Kutta method | Nonlinear optics | Numerical analysis | Split-step Fourier method | Nonlinear Schrödinger equation (NLSE) | Supercontinuum radiation | optical solitons | PHOTONIC CRYSTAL FIBERS | nonlinear Schrodinger equation (NLSE) | DISPERSION | RESPONSE FUNCTION | TELECOMMUNICATIONS | ENGINEERING, ELECTRICAL & ELECTRONIC | nonlinear optics | SYSTEMS | OPTICS | CONTINUUM GENERATION | MODULATION | Accuracy | Algorithms | Computer simulation | Nonlinearity | Mathematical models | Schroedinger equation
Supercontinuum generation | Optical fibers | Nonlinear equations | Optical solitons | Optical pulses | split-step Fourier method | Schrodinger equation | Optical propagation | nonlinear SchrÖdinger equation (NLSE) | numerical analysis | Fiber nonlinear optics | Optical pulse compression | supercontinuum radiation | Runge-Kutta method | Nonlinear optics | Numerical analysis | Split-step Fourier method | Nonlinear Schrödinger equation (NLSE) | Supercontinuum radiation | optical solitons | PHOTONIC CRYSTAL FIBERS | nonlinear Schrodinger equation (NLSE) | DISPERSION | RESPONSE FUNCTION | TELECOMMUNICATIONS | ENGINEERING, ELECTRICAL & ELECTRONIC | nonlinear optics | SYSTEMS | OPTICS | CONTINUUM GENERATION | MODULATION | Accuracy | Algorithms | Computer simulation | Nonlinearity | Mathematical models | Schroedinger equation
Journal Article
Optica, ISSN 2334-2536, 2014, Volume 1, Issue 6, pp. 400 - 406
Destructive nonlinear processes have limited the useful input power to a few megawatts for supercontinuum generation in bulk material. Consequently, reliable...
Supercontinuum generation | Ultrafast nonlinear optics | Ultrafast measurements | FIBER | LASER-PULSES | DYNAMICS | FILAMENTATION | CRYSTAL | COMPRESSION | OPTICS | OPTICAL-BREAKDOWN | FUSED-SILICA | WHITE-LIGHT CONTINUUM | COHERENCE
Supercontinuum generation | Ultrafast nonlinear optics | Ultrafast measurements | FIBER | LASER-PULSES | DYNAMICS | FILAMENTATION | CRYSTAL | COMPRESSION | OPTICS | OPTICAL-BREAKDOWN | FUSED-SILICA | WHITE-LIGHT CONTINUUM | COHERENCE
Journal Article
Optics Letters, ISSN 0146-9592, 2015, Volume 40, Issue 12, pp. 2715 - 2718
Nanoscale waveguides are basic building blocks of integrated optical devices. Especially, waveguides made from nonlinear optical materials, such as lithium...
DISPERSION | SILICON | SUPERCONTINUUM GENERATION | OPTICS | PHOTONIC WIRES | LINBO3 | NANOWIRES | Wavelengths | Lithium niobates | Waveguides | Nonlinearity | Insulators | Etching | Nanostructure | Conversion
DISPERSION | SILICON | SUPERCONTINUUM GENERATION | OPTICS | PHOTONIC WIRES | LINBO3 | NANOWIRES | Wavelengths | Lithium niobates | Waveguides | Nonlinearity | Insulators | Etching | Nanostructure | Conversion
Journal Article
physica status solidi (a), ISSN 1862-6300, 02/2018, Volume 215, Issue 4, pp. 1700684 - n/a
This paper presents the recent progress on integrated second‐order nonlinear waveguides on silicon substrates for second‐harmonic generation. In particular,...
nonlinear optics | lithium niobate | silicon | second harmonic generation | integrated photonics | thin films | HARMONIC-GENERATION | PHYSICS, CONDENSED MATTER | PHYSICS, APPLIED | PARAMETRIC OSCILLATOR | MATERIALS SCIENCE, MULTIDISCIPLINARY | LIGHT | FREQUENCY COMB GENERATION | OPTICAL-WAVE-GUIDES | LITHIUM-NIOBATE | MICRORING RESONATORS | SPANNING SUPERCONTINUUM GENERATION | MACH-ZEHNDER MODULATORS | LASER-DIODE | Thin films | Electrical engineering | Lithium niobate | Waveguides | Silicon | Dielectric films | Photonics | Harmonic generations | Lithium niobates | Silicon substrates | Deoxidizing | Phase matching | Dielectric waveguides
nonlinear optics | lithium niobate | silicon | second harmonic generation | integrated photonics | thin films | HARMONIC-GENERATION | PHYSICS, CONDENSED MATTER | PHYSICS, APPLIED | PARAMETRIC OSCILLATOR | MATERIALS SCIENCE, MULTIDISCIPLINARY | LIGHT | FREQUENCY COMB GENERATION | OPTICAL-WAVE-GUIDES | LITHIUM-NIOBATE | MICRORING RESONATORS | SPANNING SUPERCONTINUUM GENERATION | MACH-ZEHNDER MODULATORS | LASER-DIODE | Thin films | Electrical engineering | Lithium niobate | Waveguides | Silicon | Dielectric films | Photonics | Harmonic generations | Lithium niobates | Silicon substrates | Deoxidizing | Phase matching | Dielectric waveguides
Journal Article
Optics Express, ISSN 1094-4087, 02/2015, Volume 23, Issue 3, pp. 3282 - 3291
A low-loss suspended core As38Se62 fiber with core diameter of 4.5 mu m and a zero-dispersion wavelength of 3.5 mu m was used for mid-infrared supercontinuum...
MICROSTRUCTURED OPTICAL-FIBERS | STEP-INDEX FIBER | PHOTONIC CRYSTAL FIBER | OPTICS | ZERO-DISPERSION WAVELENGTH | MU-M | SCATTERING | BROAD-BAND
MICROSTRUCTURED OPTICAL-FIBERS | STEP-INDEX FIBER | PHOTONIC CRYSTAL FIBER | OPTICS | ZERO-DISPERSION WAVELENGTH | MU-M | SCATTERING | BROAD-BAND
Journal Article
OPTICS LETTERS, ISSN 0146-9592, 11/2019, Volume 44, Issue 21, pp. 5290 - 5293
A broadband visible (VIS) blue-to-red, 10 GHz repetition rate frequency comb is generated by combined spectral broadening and triple-sum-frequency generation...
SILICON-NITRIDE | OFFSET DETECTION | CONVERSION | THZ | SUPERCONTINUUM GENERATION | OPTICS | SPECTROGRAPH | WAVELENGTH CALIBRATION | PRECISION
SILICON-NITRIDE | OFFSET DETECTION | CONVERSION | THZ | SUPERCONTINUUM GENERATION | OPTICS | SPECTROGRAPH | WAVELENGTH CALIBRATION | PRECISION
Journal Article
Advanced Optical Materials, ISSN 2195-1071, 06/2019, Volume 7, Issue 12, pp. 1801793 - n/a
In order to gain more information on the white‐light generation by amorphous molecular materials, the influence of metal complex substituents on the...
supercontinuum generation | white‐light emitters | amorphous molecular materials | DFT calculations | metal–tetrel chalcogenide clusters | AUXILIARY BASIS-SETS | COMPLEX | APPROXIMATION | MATERIALS SCIENCE, MULTIDISCIPLINARY | TOTAL-ENERGY CALCULATIONS | COPPER | CONVERGENT BASIS-SETS | TRANSITION-METALS | metal-tetrel chalcogenide clusters | PSEUDOPOTENTIALS | CONSISTENT BASIS-SETS | white-light emitters | OPTICS | METAL CHALCOGENIDE CLUSTERS | Gold | Amorphization | Decomposition reactions | Metallography | Amorphous materials | Single crystals | Silver compounds | Copper compounds | Density functional theory | Emitters | Copper | Coordination compounds | Material properties
supercontinuum generation | white‐light emitters | amorphous molecular materials | DFT calculations | metal–tetrel chalcogenide clusters | AUXILIARY BASIS-SETS | COMPLEX | APPROXIMATION | MATERIALS SCIENCE, MULTIDISCIPLINARY | TOTAL-ENERGY CALCULATIONS | COPPER | CONVERGENT BASIS-SETS | TRANSITION-METALS | metal-tetrel chalcogenide clusters | PSEUDOPOTENTIALS | CONSISTENT BASIS-SETS | white-light emitters | OPTICS | METAL CHALCOGENIDE CLUSTERS | Gold | Amorphization | Decomposition reactions | Metallography | Amorphous materials | Single crystals | Silver compounds | Copper compounds | Density functional theory | Emitters | Copper | Coordination compounds | Material properties
Journal Article
Optics Letters, ISSN 0146-9592, 11/2017, Volume 42, Issue 22, pp. 4671 - 4674
We simulate and experimentally demonstrate deep ultraviolet generation from a 1550 nm laser source in a fully fiberized system by cascading second- and...
GLASS | 3RD HARMONIC-GENERATION | SUPERCONTINUUM GENERATION | 2ND-HARMONIC GENERATION | SILICA FIBERS | OPTICS | 2ND-ORDER NONLINEARITY | ULTRAVIOLET-LIGHT | ROUGHNESS
GLASS | 3RD HARMONIC-GENERATION | SUPERCONTINUUM GENERATION | 2ND-HARMONIC GENERATION | SILICA FIBERS | OPTICS | 2ND-ORDER NONLINEARITY | ULTRAVIOLET-LIGHT | ROUGHNESS
Journal Article
IEEE Journal of Selected Topics in Quantum Electronics, ISSN 1077-260X, 05/2018, Volume 24, Issue 3, pp. 1 - 5
Backward supercontinuum generation excited by random lasing is proposed and demonstrated for the first time. Unlike conventional supercontinuum generation,...
Rayleigh scattering | Optical fiber couplers | Laser excitation | supercontinuum generation | Optical fiber lasers | Optical fiber dispersion | Fiber lasers | QUANTUM SCIENCE & TECHNOLOGY | PHYSICS, APPLIED | LASER | CAVITY | POWER | MU-M | PULSES | ENGINEERING, ELECTRICAL & ELECTRONIC | RANDOM FIBER | CONTINUUM | OPTICS
Rayleigh scattering | Optical fiber couplers | Laser excitation | supercontinuum generation | Optical fiber lasers | Optical fiber dispersion | Fiber lasers | QUANTUM SCIENCE & TECHNOLOGY | PHYSICS, APPLIED | LASER | CAVITY | POWER | MU-M | PULSES | ENGINEERING, ELECTRICAL & ELECTRONIC | RANDOM FIBER | CONTINUUM | OPTICS
Journal Article
Optics Express, ISSN 1094-4087, 06/2015, Volume 23, Issue 11, pp. 13866 - 13879
We generate white light supercontinuum from slightly sub-picosecond pulses at 1.03 mu m and 515 nm. We compare the spectra and stability for various crystals,...
TRANSPARENT MEDIA | DISPERSION | SUPERCONTINUUM GENERATION | REFRACTIVE-INDEX | FEMTOSECOND LASER-PULSE | PICOSECOND | PHOTONIC CRYSTAL FIBER | SELF | CONTINUUM | OPTICS | DEPENDENCE
TRANSPARENT MEDIA | DISPERSION | SUPERCONTINUUM GENERATION | REFRACTIVE-INDEX | FEMTOSECOND LASER-PULSE | PICOSECOND | PHOTONIC CRYSTAL FIBER | SELF | CONTINUUM | OPTICS | DEPENDENCE
Journal Article
Laser & Photonics Reviews, ISSN 1863-8880, 07/2016, Volume 10, Issue 4, pp. 631 - 638
Optical frequency combs enable precision measurements in fundamental physics and have been applied to a growing number of applications, such as molecular...
Optical frequency comb | Silicon nitride | PHYSICS, CONDENSED MATTER | PHYSICS, APPLIED | CHIP | RESONATORS | PHOTONICS | SUPERCONTINUUM GENERATION | MICROCAVITIES | WAVE-GUIDE | OPTICS | Waveguides | Nitrides | Silicon | Optical radar | Buses (vehicles) | Broadband | Spectra | Optical frequency | Conversion | Atmospherics | Photonics
Optical frequency comb | Silicon nitride | PHYSICS, CONDENSED MATTER | PHYSICS, APPLIED | CHIP | RESONATORS | PHOTONICS | SUPERCONTINUUM GENERATION | MICROCAVITIES | WAVE-GUIDE | OPTICS | Waveguides | Nitrides | Silicon | Optical radar | Buses (vehicles) | Broadband | Spectra | Optical frequency | Conversion | Atmospherics | Photonics
Journal Article
Progress in Quantum Electronics, ISSN 0079-6727, 09/2015, Volume 43, pp. 1 - 30
Recent developments in laser sources operating in the mid-IR ( ) have been motivated by the numerous possibilities for both fundamental and applied research....
Mid-infrared | Optical parametric amplifiers | Nonlinear crystals | Difference-frequency generation | DIFFERENCE-FREQUENCY-GENERATION | MIDINFRARED SUPERCONTINUUM GENERATION | FEW-CYCLE PULSES | DOPED FIBER LASER | 2 MU-M | ENGINEERING, ELECTRICAL & ELECTRONIC | SOLID-STATE LASERS | OPTICAL PARAMETRIC OSCILLATOR | SURFACE-EMITTING LASERS | HIGH-AVERAGE-POWER | QUANTUM CASCADE LASERS | Lasers | Analysis
Mid-infrared | Optical parametric amplifiers | Nonlinear crystals | Difference-frequency generation | DIFFERENCE-FREQUENCY-GENERATION | MIDINFRARED SUPERCONTINUUM GENERATION | FEW-CYCLE PULSES | DOPED FIBER LASER | 2 MU-M | ENGINEERING, ELECTRICAL & ELECTRONIC | SOLID-STATE LASERS | OPTICAL PARAMETRIC OSCILLATOR | SURFACE-EMITTING LASERS | HIGH-AVERAGE-POWER | QUANTUM CASCADE LASERS | Lasers | Analysis
Journal Article