Edmund Optics®

Knowledge Center

 Verified library of trusted technical resources created by our 240+ global engineers.

Filter
Search Results for: Ultrafast Laser Diagnostics (335)

At what pulse duration is a laser considered to be “ultrafast?”

View Now Add to saved content

Why is chromatic dispersion important for ultrafast laser systems?

View Now Add to saved content

Do the short pulse durations of ultrafast lasers impact the laser induced damage threshold of ultrafast optics?

View Now Add to saved content

Ultrafast Laser Optics from Edmund Optics - PhotonicsNEXT 2021

Learn about Edmund Optics' ultrafast laser optics capabilities in this interview with Tony Karam from the PhotonicsNEXT Summit in January 2021.

View Now Add to saved content

Ultrafast Highly-Dispersive Mirrors

Pulse Compression and Dispersion Compensation for Ultrafast Lasers

View Now Add to saved content

Ultrafast Dispersion

The short pulse durations of ultrafast lasers lead to broad wavelength bandwidths, making ultrafast systems especially susceptible to dispersion and pulse broadening.

View Now Add to saved content

Ultrafast Laser Applications: Short Pulse Revolution

Join representatives from Edmund Optics, TOPTICA Photonics, and Rochester Institute of Technology for a virtual discussion about the key benefits of ultrafast lasers and how they are revolutionizing fields as diverse as brain imaging and glass polishing.

View Now Add to saved content

LIDT for Ultrafast Lasers

The short pulse durations of ultrafast lasers make them interact with optical components differently, impacting the optic’s laser damage threshold.

View Now Add to saved content

Minimizing Thermal Lensing in Ultrafast Systems

Specialized coatings can minimize thermal lensing in ultrafast laser systems, which are particularly susceptible to detrimental thermal effects.

View Now Add to saved content

Edmund Optics - UltraFast Innovations - Partnership 2021

Industry-leading laser optics are more available than ever before through the partnership of UltraFast Innovations and Edmund Optics.

View Now Add to saved content

Highly-Dispersive Ultrafast Mirrors for Dispersion Compensation

Learn how Highly-Dispersive Mirrors compensate for dispersion and compress pulse duration in ultrafast laser systems, which is critical for maximizing performance.

View Now Add to saved content

Edmund Optics TPA Ultrafast Autocorrelator by APE (700-1100nm) #11-760

Edmund Optics® manufactures thousands of precision aspheric lenses per month in our asphere manufacturing cell that operates 24 hours a day

View Now Add to saved content

Basics of Ultrafast Lasers

Master the fundamentals of ultrafast lasers and how to choose optics that can withstand their high powers and short pulse durations.

View Now Add to saved content

Laser

View Now Add to saved content

Reflective Laser Beam Shaping

Beam Shaping for High Power and Short Pulse Durations

View Now Add to saved content

Reflective Optics for Laser Applications

Beam Conditioning Optics for UV, IR, and Broadband Lasers

View Now Add to saved content

What makes laser optics different from normal optics?

View Now Add to saved content

Laser Spot Size

View Now Add to saved content

EO Acquires Quality Thin Films; Strengthens Position as Laser Optics Manufacturer - PhotonicsNEXT 2021

Learn about Edmund Optics' acquisition of Quality Thin Films in this interview with Mike Middleton and James Karchner from the 2021 PhotonicsNEXT Summit.

View Now Add to saved content

Why do ultrafast highly-dispersive mirrors have such low angles of incidence (AOIs)?

View Now Add to saved content

High Reflectivity Mirrors for Laser Applications

The industry standard method for quantifying reflectivity does not tell the whole story

View Now Add to saved content

Shaping ultrafast laser beams for glass processing

View Now Add to saved content

Key Parameters of a Laser System

Learn the key parameters that must be considered to ensure you laser application is successful. Common terminology will be established for these parameters.

View Now Add to saved content

Laser Optics Lab:Specifications for Selecting a Laser

When determining which laser to use for your application, consider the following specifications: wavelength, coherence length, beam divergence, and Rayleigh range.

View Now Add to saved content

Laser Damage Threshold Calculator

View Now Add to saved content

Bulk Laser Damage in Glass

Learn why the bulk laser-induced damage threshold (LIDT) of glass is significantly different than the LIDT optical components with coatings, such as AR thin films.

View Now Add to saved content

What is the difference between a laser pointer and a laser diode module?

View Now Add to saved content

Laser Optics Lab Trailer

The Laser Optics Lab video series discusses laser optics concepts including specifications, coating technologies, product types, and more

View Now Add to saved content

How Laser Crystals are Made

Follow laser crystals through their entire manufacturing process from fabrication, to coating, to quality control in the Edmund Optics Florida facility.

View Now Add to saved content

Gas Laser

View Now Add to saved content