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*Industrial Ultrafast Lasers
*Designed for heavy duty operation in real industry*Picosecond or femtosecond pulse duration*Tailored for micromachining, microfabrication, photovoltaics, ophthalmology
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Compact Fiber Seeders
LightWire FFS Series
LightWire FFS series fiber lasers are dedicated for seeding solid state femtosecond Yb:YAG based CPA systems. Ekspla offers FFS lasers either with femtosecond pulse duration directly from fiber, or with chirped pulses.
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Lasers for Micromachining
fs/ps
With thousands of femtosecond and picosecond lasers deployed in demanding manufacturing applications, Spectra-Physics delivers highest reliability for dependable multi-year operation to advance micromachining production applications.
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Femtosecond Extended Spectroscopic Systems
Harpia
Capabilities of HARPIA‑TA spectrometer can be further expanded by HARPIA‑TF and HARPIA‑TB extensions. Fundamentally, the all-integrated HARPIA system can be viewed as a miniaturized lab facilitating all the most popular time-resolved spectroscopy experiments in a single package. The all-inclusive HARPIA system can provide an extensive comprehension of the intricate photophysical and photochemical properties of the investigated samples.
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ORIGAMI femtosecond lasers
Our all-in-one, single-box, microjoule femtosecond lasers. The laser head, controller, and air-cooling system are all integrated into one robust package so small it fits in your hand luggage.
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aeroPULSE Ultrafast Fiber Lasers
aeroPULSE is our ultrafast fiber laser platform. Robust, industrial, and available in both pico- and femtosecond flavors.
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Autocorrelators
Opticala Autocorrelators are devices for measuring the intensity or field autocorrelation function of light, mostly used for determining the pulse width of picosecond or femtosecond pulses, to which an electronic apparatus such as oscillascope would be too slow. The basic principle of operation of an autocorrelator for a pulse width measurement is to check the correlation of the temporal pulse trace with itself.
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Autocorrelator: 10fs-100ps, Any Repetition Rate
UVisIR'sreal-time long scanning autocorrelator measures laser pulses from femtosecond to picosecond. It is easy-to-use, real-time, dispersion-free, high-sensitivity and background-free! Long scanning range: 10fs-100ps. Real-time, dispersion-free and background-free scanning. High sensitivity: High-voltage(-1000VDC) PMT embeded! (Diode version is also available!). Broadband wavelength range: 500-1700nm.
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Powerful 1 µm Femtosecond Fiber Laser
FemtoFiber ultra 1050
The FemtoFiber ultra 1050 is part of TOPTICA's third generation of ultrafast fiber lasers. The system delivers laser pulses of 90 - 100 fs in duration at a central wavelength of 1050 nm. Using a power amplifier the system provides more than 5 W average output power. It is a compact femtosecond laser system with turnkey operation and cost-effective design.
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Femtosecond Terahertz Spectrometer
Pacifica
Terahertz spectroscopy and microscopy are becoming a powerful tool in biology, medicine, semiconductor physics and in many applicaitons. Designed for obtaining THz spectra by using of THz pulses generated by femtosecond laser in oriented ZnTe crystal.
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Femtosecond Fluorescence Upconversion Spectrometer
Beacon
Beacon up-conversion spectrometer has been specially designed for measuring fluorescence lifetimes in the 400 - 1500 nm spectral range.
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Spectroscopy
*Femtosecond multi-pulse transient absorption and reflection measurements *Femtosecond fluorescence upconversion *Time-resolved femtosecond stimulated Raman scattering (FSRS) *Hundred picoseconds-to-microsecond time-correlated single-photon counting (TCSPC)
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(X-ray and XUV) Streak Cameras
AXIS-PX
We build streak camera systems that can achieve time resolution on the femtosecond time scale while conserving and ultra-fine spatial resolution on a very long slit length.
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Cross-Correlator Pulse Profiling Systems
Rincon
The third order cross-correlator is ideal for looking at the full range of output from amplified femtosecond laser systems. High temporal resolution over a long (close to 1 ns) window shows pulse features that are usually missed, giving the user a detailed and complete picture of the quality and stability of the output pulse parameters of their femtosecond lasersystem.
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Nanosecond Pulsed Lasers
Our nanosecond pulsed lasers feature pulses in the ns range. For picosecond and femtosecond lasers please see Ultrafast Lasers.
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Pulse Acquisition Spectrometer
Infrared Systems Development Corp.
Turn-key, drop-in solution for femto-second Pump-Probe 2D Vibrational Spectroscopy. All required components are provided, including a host computer and LabView based LASPEC software. Simply focus the laser energy into the entrance slit and start acquiring data.
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Femtosecond Ti:sapphire Laser Kits
TISSA Series
TISSA kits contain all components of femtosecond Ti: sapphire oscillator preinstalled and tested on a breadboard and supplied with a cover box.
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Femtosecond Fiber Lasers
Best in class femtosecond fiber lasers: highest output power, lowest phase noise, highest reliability. Choose the perfect model for your application from our Erbium and Ytterbium fiber lasers with center emission wavelengths from the visible to the NIR, and extending to the Mid-IR in selected models.
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*Femtosecond Lasers
Focus the energy on a very short time scale within a single laser pulse.
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Single Shot Third-order Cross- Correlator
Rincon SS
Specifically developed for measuring a wide array of output parameters from ultrafast laser systems including: contrast ratio of laser pulses, determining pulse pedestal, pre- and post-pulses, and amplified spontaneous emission in femtosecond systems.
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Femtosecond Autocorrelators - Pulse Measurement Systems
Reef
The autocorrelation technique is the most common method used to determine laser pulse width characteristics on a femtosecond time scale . Del Mar Photonics autocorrelators have been specifically designed to measure the width of pulses from femtosecond lasers.
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Femtosecond Laser
ALTAIR
ALTAIR is a compact fiber laser producing high average power with ultrashort femtosecond pulses (< 160 fs) at high repetition rate (80 MHz standard, others optional) in an ultra compact and robust format.
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Harmonic Generators
Our harmonic Generators include Doubler, Tripler, and Quadrupler for doubling, tripling, and quadrupling laser frequency in the wavelength range 680-1300nm. The second harmonic, third harmonic, and fourth harmonic generation up-convert the laser frequency to a wavelength range 190-650nm. These harmonic generators greatly expanded the application of wavelength range for femtosecond and picosecond lasers available for both amplifiers and oscillators.
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Broadband Mid-Infrared Femtosecond Laser Source
FemtoFiber dichro midIR
The new FemtoFiber dichro midIR represents an ideal laser source for mid-infrared spectroscopy and imaging. It provides a tunable broadband output in the wavelength range of 5 to 15 m (20 - 60 THz, 670 - 2000 cm-1). The unique 400 cm-1 broad emission spectra allow to excite a wide range of materials at the same time. The air-cooled system is based on TOPTICAs proprietary fiber laser technologies and includes a difference frequency generation (DFG) unit as well as all necessary electronics into the same box. All functions and features are computer controllable by Ethernet or USB interfaces.
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Femtosecond Laser
ALCOR
Spark Lasers’ ALCOR is specifically designed for two-photon excitation. It offers clean femtosecond pulses with the highest guaranteed peak power on the market, in an unprecedented compact format and with fixed wavelengths at 780, 920, 1040 and 1064 nm.
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Compact Terahertz Spectrometer
TeraSmart
>5 THz bandwidth, >90 dB dynamic range. compact terahertz spectrometer TeraSmart integrates the latest achievements in broadband Terahertz Time Domain Spectroscopy (THz-TDS) into an easy-to use turnkey solution. It combines Menlo Systems’ latest fiber-based femtosecond laser sources featuring our figure 9® mode locking technology with our industry-proven THz components.
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High Power Femtosecond Lasers
The Carmel series offers a very compact design with free-space delivery wavelengths of 780 nm, 1550 nm, and now 1750 nm, pulse widths as short as 90 fs and power levels up to 2.5 W. In contrast, the Cazadero offers high pulse energies (up to 3 µJ) with pulse widths of < 500 fs at 1550 nm and user-selected repetition rates from MHz down to single pulse.
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ExciPro Femtosecond Transient Absorption Pump-Probe Spectrometer
ExciPro
ExciPro is the first on the market femtosecond transient absorption pump-probe spectrometer. Two linear image sensors are placed in the focal in the focal plane of an imaging spectrograph to measure probe and reference spectra originating from femtosecond white light continuum generator.
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Light
Welcome to Thorlabs; below you will find links to light emitters, sources, and controllers, a subset of our entire line of photonics products. Our light sources are conveniently separated into coherent and incoherent sources. The coherent source category includes laser diodes, laser diode modules, tunable lasers, HeNe lasers, and femtosecond lasers, while the incoherent source link brings you to a selection of LEDs, white light, and broadband SLD sources. The Quantum Electronics category includes optical amplifiers, modulators, and gain elements that are frequently used in research and OEM applications. All of our light sources and optical amplifiers are supported by an extensive line of mounts, sockets, TEC controllers, and current controllers.
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Tunable, Ultrafast TI: Sapphire Laser
SPRITE XT
Sprite XT is a flexible ultrafast, femtosecond laser source. It delivers stability, reliability and productivity and is equally at home in the lab or as part of an OEM application. Choose your output power (up to multi-Watts), pulse width (femtosecond or picosecond models), wavelength range (fixed wavelength or tunable), and pulse repetition rate (<80 MHz to multi-GHz). All Sprite models are designed for alignment-free and maintenance-free operation and can be controlled from a web browser. It’s ideal for multi-photon excitation (MPE) and FLIM, quantum optics, time resolved spectroscopy, nonlinear optics, pump-probe experiments, microscopy, amplifier seeding, and electro-optic sampling.