Search
Menu
DataRay Inc. - ISO 11146-Compliant Laser Beam Profilers
< More White Papers & Application NotesSubscribe to our E-Newsletters

WHITE PAPER: DPAL Pump System Exceeding 3kW at 766nm and 30 GHz Bandwidth (6/8/2016)

WHITE PAPER: DPAL Pump System Exceeding 3kW at 766nm and 30 GHz Bandwidth
WHITE PAPER: DPAL Pump System Exceeding 3kW at 766nm and 30 GHz Bandwidth
If you are having problems seeing this newsletter, please click here to view

Photonics Media White Papers
Photonics Media - The Pulse of the Industry

Follow us on twitter          Like us on Facebook
DOWNLOAD FREE WHITE PAPERS
DPAL Pump System Exceeding 3kW at 766nm and 30 GHz Bandwidth

Due to their low quantum defect, diode pumped alkali metal vapor lasers (DPALs) offer the promise of scalability to very high average power levels while maintaining excellent beam quality. Research on DPALs has progressed to ever increasing power levels across multiple gain media species over the last years, necessitating pump power in the kW range. Each material requires a specific pump wavelength: near 852nm for cesium, 780nm for rubidium, 766nm for potassium, and 670nm for lithium atoms. The shorter pump wavelength below 800nm are outside the typical wavelength range for pump diodes developed for diode pumped solid state lasers (DPSS).

DOWNLOAD WHITE PAPER >>





Visit Photonics Media to download other white papers and learn more about the latest developments in lasers, imaging, optics, biophotonics, machine vision, spectroscopy, microscopy, photovoltaics and more.

https://photonics.com/WhitePapers.aspx

Sponsored by



Questions: [email protected]
Unsubscribe: https://www.photonics.com/Newsletter/EmailUnsubscribe.aspx

Subscribe | Manage Subscriptions | Privacy Policy | Terms and Conditions of Use

© 1996 - 2024 Laurin Publishing. All rights reserved.
Photonics.com is Registered with the U.S. Patent & Trademark Office.
Reproduction in whole or in part without permission is prohibited.
We use cookies to improve user experience and analyze our website traffic as stated in our Privacy Policy. By using this website, you agree to the use of cookies unless you have disabled them.