Where to Buy Carrier–envelope Offset Measurement and Stabilization
Particularly in the context of optical frequency metrology, it is often important to equip ultrafast laser system with instruments for measuring or stabilization of the carrier–envelope offset frequency.
E | See also our encyclopedia article on carrier–envelope offset! Related articles: frequency combs, frequency metrology, stabilization of lasers |
Related products: frequency metrology equipment
Related product category: detectors and measurements
8 suppliers for carrier–envelope offset measurement and stabilization are listed in the RP Photonics Buyer's Guide. Both manufacturers and distributors can be registered.
Suppliers with Ad Package | |
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Company | Product Description |
Emery Court Stockport, Cheshire SK4 3GL United Kingdom www.laserquantum.com Social: Facebook, LinkedIn, Twitter, YouTube E-mail: Tel.: +44 161 975 5300 Fax: +44 161 975 5309 | Laser Quantum provides several lasers and systems for carrier–envelope phase stabilisation, including the finesse pure CEP – an ultra low noise laser with direct pump modulation capabilities and powers between 4–16 W. |
Precision in photonics. Together we shape light. Am Klopferspitz 19a 82152 Martinsried Germany Quality: ISO 9001:2015 www.menlosystems.com Social: LinkedIn, YouTube E-mail: E-mail: (for North America) Tel.: +49 89 1 89 16 60 Fax: +49 89 1 89 16 61 11 | Menlo Systems' CEP Stable Lasers and CEP Phase Stabilization are solutions that allow one to stabilize the carrier envelope phase of light pulses. We offer CEP stable femtoscond laser sources as well as phase stabilization electronics for OEM integrators. Applications range from CEP stable front end seed lasers to few cycle pulse oscillators and amplifiers for high harmonic generation and attosecond science. |
Leading in Ultrafast Kapteyn-Murnane Laboratories Inc. 4775 Walnut St. #102 Boulder, CO 80301 United States | Our Stryde Ti:sapphire mode-locked oscillator has an optional "CEP-ready" configuration for applications that require CEP stabilization. Our RAEA HP-SP based on a multipass amplifier design has the ideal system architecture for applications that require CEP stabilization for mJ-class, multi-kHz systems. |
Pôle Euro 95 – Bâtiment D 165 rue des Cistes 06600 Antibes France | The combination of the Dazzler or high repetition rate Dazzler single-shot and dispersion-free CEP control, with the multi-kHz single-shot CEP detection of the Fringeezz allows to build high bandwidth carrier–envelope phase stabilization loops. The ultimate CEP control for Ti:sapphire amplifiers, OPCPAs or other CEP-compatible systems, as well as for high-stability interferometers. For amplifier CEP stabilization or phase-tagging, fast and single-shot measurement is mandatory. Placed after a f-to-2f setup, the Fringeezz can extract the CEP error for every shot, up to 10 kHz. |
The ultimate ultrafast pulse characterization Sphere Ultrafast Photonics, SL Calle Raimundo Garcia Dominguez, 2 15930 Boiro (A Coruña) Spain www.sphere-photonics.com E-mail: | The CEP-tag system provides at single-shot measurements of the Carrier Envelope Phase (CEP) offset of amplified laser pulse. It is based on f–2f interferometry, where the second harmonic of the red edge of an octave-spanning spectrum is spectrally interfered with the blue edge. Detection is based on a photodiode array and the use of Field-Programmable Gate Array (FPGA) electronics enables us to determine the CEP at a rate of 100 kHz. |
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All Suppliers | |
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Vogelsangstr. 15 8307 Effretikon Switzerland | |
Pôle Euro 95 – Bâtiment D 165 rue des Cistes 06600 Antibes France | The combination of the Dazzler or high repetition rate Dazzler single-shot and dispersion-free CEP control, with the multi-kHz single-shot CEP detection of the Fringeezz allows to build high bandwidth carrier–envelope phase stabilization loops. The ultimate CEP control for Ti:sapphire amplifiers, OPCPAs or other CEP-compatible systems, as well as for high-stability interferometers. For amplifier CEP stabilization or phase-tagging, fast and single-shot measurement is mandatory. Placed after a f-to-2f setup, the Fringeezz can extract the CEP error for every shot, up to 10 kHz. |
Leading in Ultrafast Kapteyn-Murnane Laboratories Inc. 4775 Walnut St. #102 Boulder, CO 80301 United States | Our Stryde Ti:sapphire mode-locked oscillator has an optional "CEP-ready" configuration for applications that require CEP stabilization. Our RAEA HP-SP based on a multipass amplifier design has the ideal system architecture for applications that require CEP stabilization for mJ-class, multi-kHz systems. |
Emery Court Stockport, Cheshire SK4 3GL United Kingdom www.laserquantum.com Social: Facebook, LinkedIn, Twitter, YouTube E-mail: Tel.: +44 161 975 5300 Fax: +44 161 975 5309 | Laser Quantum provides several lasers and systems for carrier–envelope phase stabilisation, including the finesse pure CEP – an ultra low noise laser with direct pump modulation capabilities and powers between 4–16 W. |
130–13200 Delf Place Richmond B.C., V6V 2A2 Canada | thinklucid.com Tel.: +1 833 465 8243 |
Precision in photonics. Together we shape light. Am Klopferspitz 19a 82152 Martinsried Germany Quality: ISO 9001:2015 www.menlosystems.com Social: LinkedIn, YouTube E-mail: E-mail: (for North America) Tel.: +49 89 1 89 16 60 Fax: +49 89 1 89 16 61 11 | Menlo Systems' CEP Stable Lasers and CEP Phase Stabilization are solutions that allow one to stabilize the carrier envelope phase of light pulses. We offer CEP stable femtoscond laser sources as well as phase stabilization electronics for OEM integrators. Applications range from CEP stable front end seed lasers to few cycle pulse oscillators and amplifiers for high harmonic generation and attosecond science. |
In den Niederwiesen 4a 76744 Wörth am Rhein Germany | |
The ultimate ultrafast pulse characterization Sphere Ultrafast Photonics, SL Calle Raimundo Garcia Dominguez, 2 15930 Boiro (A Coruña) Spain www.sphere-photonics.com E-mail: | The CEP-tag system provides at single-shot measurements of the Carrier Envelope Phase (CEP) offset of amplified laser pulse. It is based on f–2f interferometry, where the second harmonic of the red edge of an octave-spanning spectrum is spectrally interfered with the blue edge. Detection is based on a photodiode array and the use of Field-Programmable Gate Array (FPGA) electronics enables us to determine the CEP at a rate of 100 kHz. |
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