• Study Resource
  • Explore
    • Arts & Humanities
    • Business
    • Engineering & Technology
    • Foreign Language
    • History
    • Math
    • Science
    • Social Science

    Top subcategories

    • Advanced Math
    • Algebra
    • Basic Math
    • Calculus
    • Geometry
    • Linear Algebra
    • Pre-Algebra
    • Pre-Calculus
    • Statistics And Probability
    • Trigonometry
    • other →

    Top subcategories

    • Astronomy
    • Astrophysics
    • Biology
    • Chemistry
    • Earth Science
    • Environmental Science
    • Health Science
    • Physics
    • other →

    Top subcategories

    • Anthropology
    • Law
    • Political Science
    • Psychology
    • Sociology
    • other →

    Top subcategories

    • Accounting
    • Economics
    • Finance
    • Management
    • other →

    Top subcategories

    • Aerospace Engineering
    • Bioengineering
    • Chemical Engineering
    • Civil Engineering
    • Computer Science
    • Electrical Engineering
    • Industrial Engineering
    • Mechanical Engineering
    • Web Design
    • other →

    Top subcategories

    • Architecture
    • Communications
    • English
    • Gender Studies
    • Music
    • Performing Arts
    • Philosophy
    • Religious Studies
    • Writing
    • other →

    Top subcategories

    • Ancient History
    • European History
    • US History
    • World History
    • other →

    Top subcategories

    • Croatian
    • Czech
    • Finnish
    • Greek
    • Hindi
    • Japanese
    • Korean
    • Persian
    • Swedish
    • Turkish
    • other →
 
Profile Documents Logout
Upload
Statement of the competency PHYSICS NYC
Statement of the competency PHYSICS NYC

Characterisation of the Tunable Laser Source
Characterisation of the Tunable Laser Source

Optoniks
Optoniks

... OPTONIKS has completed a 3D profilometry system prototype for Intel metrology lab which is responsible for measurement requirements and requests from other departments within Intel and also develops and assesses new metrology systems at Intel. Optonik’s next step is to launch development of more 3D ...
Slowing Down the Speed of Light - The Institute of Optics
Slowing Down the Speed of Light - The Institute of Optics

www.phlam.univ
www.phlam.univ

using ultra-short millimetre wave pulses
using ultra-short millimetre wave pulses

Microwaves and Fiber Optics Summer 2013
Microwaves and Fiber Optics Summer 2013

Short-pulse limits in optical instrumentation design for the S
Short-pulse limits in optical instrumentation design for the S

Microsoft Word Format - McMaster University > ECE
Microsoft Word Format - McMaster University > ECE

... 5. Large-signal analysis based on behavior model Rate equations can be solved directly in time domain by numerical integration. However, under step function injection, some features in output optical power and lasing frequency varying as functions of time can be directly observed from steady state a ...
Second-harmonic generation of amplified femtosecond Ti:sapphire
Second-harmonic generation of amplified femtosecond Ti:sapphire

Optical Fiber communication
Optical Fiber communication

EXTERNAL MODULATION
EXTERNAL MODULATION

Temporal Integrated Detection and Applications of FS-Pulse Scattering S. Bakic
Temporal Integrated Detection and Applications of FS-Pulse Scattering S. Bakic

13 Int.  Symp  on  Appl.  Laser ...
13 Int. Symp on Appl. Laser ...

Optical bistability in a Vertical-Cavity Semiconductor Optical Amplifier
Optical bistability in a Vertical-Cavity Semiconductor Optical Amplifier

Reports of optical fiber communication systems 2011-2012
Reports of optical fiber communication systems 2011-2012

Intro_Ch_03B
Intro_Ch_03B

Soliton Self-Frequency Shift Cancellation in
Soliton Self-Frequency Shift Cancellation in

... experimental observations of temporal solitons in dispersive optical fibers (4 ), it was found that fiber solitons can exhibit a strong self-frequency shift (5, 6 ). That is, a short (⬍1 ps) soliton propagating in a Raman-active medium like silica is continuously red-shifted because the lowfrequency ...
Diffraction Free Beams
Diffraction Free Beams

Symbolic computation and solitons of the nonlinear Schro¨dinger
Symbolic computation and solitons of the nonlinear Schro¨dinger

Lecture 11
Lecture 11

Nonlinear Optics
Nonlinear Optics

Introduction to Nonlinear Optics
Introduction to Nonlinear Optics

Visible Wavelength Fiber Bragg Grating Arrays for
Visible Wavelength Fiber Bragg Grating Arrays for

- Papers in Physics
- Papers in Physics

< 1 ... 82 83 84 85 86 87 88 89 90 ... 93 >

Optical rogue waves

Optical rogue waves are rare pulses of light analogous to rogue or freak ocean waves. The term optical rogue waves was coined to describe rare pulses of broadband light arising during the process of supercontinuum generation—a noise-sensitive nonlinear process in which extremely broadband radiation is generated from a narrowband input waveform—in nonlinear optical fiber. In this context, optical rogue waves are characterized by an anomalous surplus in energy at particular wavelengths (e.g., those shifted to the red of the input waveform) and/or an unexpected peak power. These anomalous events have been shown to follow heavy-tailed statistics, also known as L-shaped statistics, fat-tailed statistics, or extreme-value statistics. These probability distributions are characterized by long tails: large outliers occur rarely, yet much more frequently than expected from Gaussian statistics and intuition. Such distributions also describe the probabilities of freak ocean waves and various phenomena in both the man-made and natural worlds. Despite their infrequency, rare events wield significant influence in many systems. Aside from the statistical similarities, light waves traveling in optical fibers are known to obey the similar mathematics as water waves traveling in the open ocean (the nonlinear Schrödinger equation), supporting the analogy between oceanic rogue waves and their optical counterparts. More generally, research has exposed a number of different analogies between extreme events in optics and hydrodynamic systems. A key practical difference is that most optical experiments can be done with a table-top apparatus, offer a high degree of experimental control, and allow data to be acquired extremely rapidly. Consequently, optical rogue waves are attractive for experimental and theoretical research and have become a highly studied phenomenon. The particulars of the analogy between extreme waves in optics and hydrodynamics may vary depending on the context, but the existence of rare events and extreme statistics in wave-related phenomena are common ground.
  • studyres.com © 2025
  • DMCA
  • Privacy
  • Terms
  • Report