Class 5 Photonics GmbH
Booth number: 4205-09
www.class5photonics.com
About us
Our mission at Class 5 Photonics is to deliver ultrafast, high-power laser systems and EUV technology at outstanding performance to advance demanding applications from bio-imaging to ultrafast material science and attosecond science. Our technology platform are robust optical parametric chirped pulse amplifiers (OPCPA) delivering femtosecond pulses at extreme power at extreme wavelengths from EUV to mid-IR. Class 5 Photonics GmbH is a private company founded in 2014 as spin-off of the world-leading EUV/X-ray synchrotron laboratory Deutsches Elektronensynchrotron DESY and the Helmholtz-Institute Jena. Since over 10 years the Class 5 Photonics team builds robust optical parametric chirped pulse amplifiers (OPCPA) which already won several awards for their high performance.
We are hiring:
Laser engineer
Address
Notkestr. 85
22607 Hamburg
Germany
Phone: +49 40 22863165
Contact person:
Luisa Hofmann
Sales Manager
E-mail: luisa.hofmann@class5photonics.com
Products & Services
5 µJ at 1300 nm @ 1 MHz
5 µJ at 1700 nm @ 1 MHz
repetition rates up to 10 MHz available
pumped by Coherent Monaco industrial femtosecond laser
White Dwarf OPCPA 5 W for few-cycle pulses
< 9 fs at 800 nm @ 1 MHz
most compact few-cycle high-power laser system
CEP stability optional
pumped by Coherent Monaco industrial femtosecond laser
White Dwarf HE OPCPA 30 W
few-cycle pulses from 800 nm to 3 µm
excellent temporal contrast due to OPCPA
CEP stability
up to 30 W output power
Supernova OPCPA 100 W
output power up to 100 W
output enegery up to 50 mJ
few-cycle pulses from 800 nm to 3 µm
CEP stability
Moonlander HHG
21-50 eV photon energy with optional filtering and focusing
full pump-probe suite in combination with White Dwarf HE OPCPA
100 kHz or more
designed for ARPES and CDI
White Dwarf OPCPA for few-cycle pulses
-< 9 fs at 800 nm @ 1 MHz
-most compact few-cycle high-power laser system
-CEP stability optional
-pumped by Coherent Monaco industrial femtosecond laser
White Dwarf HE
-few-cycle pulses from 800 nm to 3 µm
-excellent temporal contrast due to OPCPA
-CEP stability
-up to 30 W output power
Supernova
-output power up to 100 W
-output enegery up to 50 mJ
-few-cycle pulses from 800 nm to 3 µm
-CEP stability