FemtoSecond Laser

概述
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Laser pulse compression module

It is a compact dispersion device with a tail fiber, designed specifically for femtosecond pulse shaping applications. The negative color bulk device will be used as a pulse compressor (or pulse stretcher) depending on the application situation. Constructing using transmission gratings and designing them to fill a range of fixed dispersion values, while other techniques such as prism based or fiber Bragg grating (FBG) are ineffective.

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1030-1550nm low-cost femtosecond pulse laser source

Xiaoxiao Photon's ytterbium doped ultrafast fiber laser provides ultra short pulses (>150fs) in the wavelength range of 1030nm. The fundamental oscillator of this laser has a repetition rate of 10-30 MHz and an average power greater than 30 mW. Erbium doped ultrafast fiber lasers provide ultra short pulses (>50 fs) in the wavelength range of 1550 nm. The fundamental oscillator of the laser has a repetition rate of 70 ± 5 MHz and an average power exceeding 50 mW. The laser has a fully polarization maintaining fiber structure, which maximizes environmental stability

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1030-2000nm femtosecond pulse laser source

Xiaoxiao Photon provides femtosecond laser sources with short pulse durations of approximately 50~200 fs in different regions of 1~2 μ m, with a full operating repetition rate of approximately 1 KHz~50 MHz. Compared with existing convective ultra short pulse lasers on the market, this all fiber femtosecond laser source has a compact structure and light weight

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FEMTO30 femtosecond laser 1030nm 30W 160 μ J< 700f

FEMTO by Fiberryst is a series of powerful industrial femtosecond lasers with an output power of up to 30W, pulse energy exceeding 160 μ J, and pulse width shorter than 700fs. The Femto series is based on Taranis technology and can achieve high pulse energy and flexible repetition rate to meet the requirements of high-yield and high-energy applications. The unique and compact packaging structure provides excellent reliability and beam quality. The product accepts customization

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1050nm high-power single cavity dual comb femtosecond pulse laser 200fs 80MHz 2W

This high-power dual comb laser is an ideal tool for pump probe measurement (ASOPS) and dual comb spectroscopy. The system provides a pair of almost identical femtosecond lasers with slightly different pulse repetition rates. This difference means that the relative optical delay between pulse sequences is rapidly scanned over time. Through a novel shared cavity architecture, our system is able to achieve ultra-low intensity and timing noise during free operation. The passive stability of this laser makes it an ideal choice for sampling applications: it only has a compact laser cavity and does not require high-speed locking electronics. This eliminates most of the complexity of traditional ASOPS and dual comb systems, while improving noise performance and reducing footprint.

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780nm high-power ultrafast femtosecond fiber laser<120fs 80MHz

The 780nm femtosecond ultrafast laser developed by Xiaoxiao Photon can output a 780nm free space laser beam with a power greater than 0.4W, a pulse width less than 120fs, and a near diffraction limit. The 24-hour power stability can reach

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<100 fs or<400 fs femtosecond ytterbium doped Yb mode-locked fiber laser 1030nm/1045nm

Developed for academic research, this integrated femtosecond laser oscillator is based on a diode pumped ytterbium doped solid-state laser, which is pumped by an external fiber coupled laser diode. Clean sech ^ 2 type pulses are formed through optical soliton mode locking.

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<100fs or<200fs, 100W amplified mode-locked femtosecond oscillator laser 1035nm

This oscillator features a compact, high-power, high repetition rate femtosecond laser source with outstanding beam quality, high average power, and50W or>100W.

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1560nm high repetition rate femtosecond pulse fiber laser with a pulse width of 10mW, 500fs, 200MHz

The E-Fiber series ultrafast laser integrates new femtosecond laser technology, using high-performance rare earth fiber as the working medium, combined with high-precision dispersion compensation technology and active servo system, to achieve stable output of high repetition rate femtosecond pulse laser in the 1560nm band. One click auto start, long-term stable operation and maintenance free, with the characteristics of extremely narrow laser pulses and high peak pulse power, widely used in optical frequency comb, supercontinuum spectrum, terahertz THz and other fields* Accept customization of parameters such as pulse width, power, repetition rate, etc.

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1560nm band high-power femtosecond pulse fiber laser 1W 120fs 80MHz

The E-Fiber series high-power ultrafast laser integrates new femtosecond laser technology, using high-performance rare earth fiber as the working medium, combined with high-precision dispersion compensation technology and active servo control system, to achieve stable output of 1.5 μ m femtosecond pulse laser with an average power of 1 watt. One click auto start and long-term stable operation, with the characteristics of extremely narrow laser pulses and high peak optical power. It has a wide range of applications in optical frequency comb, supercontinuum spectrum, terahertz THz and other fields. *Accept customization of parameters such as pulse width, power, repetition rate, etc.

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0.7-0.98um visible femtosecond pulse laser 10-100MHz>500mW Stuttgart Alpha MIR-VIS

The 0.7-0.98 μ m visible femtosecond pulse laser is a compact fully automatic laser from Alpha (- HP). It provides several hundred milliwatts of energy in the spectral range of 700-980nm, which is typically only available in titanium sapphire lasers. The CNC module is installed in the Alpha HP casing and can be upgraded at any time. This laser has a separate output port, which can be bypassed if high output power of Alpha (- HP) is required. Therefore, the system provides great flexibility and the use of output beams. This module can be controlled through a user-friendly Alpha Tune GUI, providing automatic adjustment and output optimization functions

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1035nm Primus high-power femtosecond oscillator Primus

Our 1035 nm Primus high-power femtosecond oscillator provides high average output power and excellent low noise level, achieving a shot noise limit of over 300 kHz. The entire device (including the pump diode) is enclosed in a solid-state water-cooled housing, thus possessing long-term stability and robustness against external disturbances.

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4.5-16 μ m mid infrared femtosecond pulse laser 1/30/80mW 350-500f

The Stuttgart mid infrared femtosecond pulse laser extends the tuning range of Alpha HP wavelength to 16 μ m. Provide an average power of tens of milliwatts between 5 and 12 μ m, and obtain several milliwatts of power at a wavelength of 16 μ m. Pumped by the Stuttgart instrument Alpha HP, this laser provides pulses with limited transformation while maintaining excellent wavelength and power stability of its pump sour

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Alpha SRS coherent Raman multi-color laser source 750-950nm (ultra-low noise fully automatic laser system)

Alpha SRS is an ultra-low noise and fully automated laser system developed specifically for coherent Raman scattering microscopy. Based on solid-state femtosecond technology, this multi-color system reaches the limit of shot noise at modulation frequencies of 1 MHz and above. Provides adjustable radiation in the range of 750-950nm and 1.4-2.0um, as well as a spectral fixed beam at 1043nm, making it ideal for coherent Raman microscopy in the range of 1015-3695cm-1 and multiphoton excitation microscopy. By utilizing customizable pulse durations ranging from a few hundred femtoseconds to picoseconds, efficient excitation and spectral resolution as low as 13 cm-1 have become possible.

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GLOphotonics Fastlas Novel Hollow Fiber Femtosecond Laser Pulse Width Compressor 343nm 1ps-30fs

GLOphotonics Fastlas' new hollow fiber femtosecond laser pulse width compressor is a highly promising nonlinear pulse compressor in the market, with shorter pulses.

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SOPRANO series femtosecond laser 1310nm 20-300fs 60mW 30MHz

The new SOPRANO mini femtosecond laser from Cycle GmbH is an ideal solution for various applications. Its customized wavelength output is about 1310nm, with a pulse duration between 20fs and 300fs, making it suitable for specific applications in semiconductor and detector testing. For example, OBIC imaging is one of them.

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Fluence series all fiber femtosecond laser 1030nm 0.8-30W

This is not a regular laser, but a superhero in a laser oscillator. It possesses special superpowers that stand out among oscillators. Small in size, but very stable and sturdy. Even if the earth trembles, the laser can still work as usual. The same power, the same pulse, has not degraded for many years. Let's take a look at this Fluence oscillator - it is a SESAM free, all fiber, ultrafast laser.

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Ytterbium doped femtosecond seed source fiber laser module 1033nm 20mW (spectral bandwidth ≥ 10nm ≤ 300fs)

飞秒种子源( Ytterbium-doped Femtosecond Fiber Laser Module 1033nm 20mW )

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Single cycle infrared femtosecond pulse light source 1.2-3.0um 10fs 250mW 10nJ

ALBATROSS is an excellent light source that generates single period light at the repetition rate of a laser oscillator. It can effectively drive disturbance nonlinearity. A NIR-IR waveform with more than 3 octaves is a striking proof of its potential. Diode laser pumping generates ultra-low noise in field amplitude and CEP, resulting in high waveform fidelity. It is very suitable for exploring infrared photoelectrons on a sub periodic time scale. Modular extensions for electric field sampling, ultra wideband mid infrared generation, and ultra-low noise external amplification for all output waveforms (all in preparation) will advance field resolved infrared spectroscopy and pave the way for MHz rate attosecond experiments.

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Femtosecond pulse compressor unipolar/bipolar unit (maximum average power 100W)

Femtosecond pulse compressors are compatible with any repetition rate and on-demand pulse laser system, operate stably 24/7, integrate simply with existing laser systems, have no active optical components, no mechanical moving parts, require no maintenance, and can operate in harsh environments such as dust or vibration

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Multi color single cavity dual comb pump probe laser<200fs 80MHz 525/800/1050/1600nm

This multi-color pump detection solution system is an ideal tool for fast pump probe sampling applications. This system is an integrated multi-color optical sampling solution. The core of this system is a pair of femtosecond lasers with slightly different pulse repetition rates. Both of these lasers are produced using a new single shared cavity structure. Due to this characteristic, the noise of the two pulse sequences is highly correlated, achieving ultra-low relative timing jitter below the optical period without any active feedback Compared with traditional ASOPS systems, this feature not only improves performance, but also greatly reduces the complexity of the solution. Effective wavelength conversion is provided by an optical parametric oscillator (OPO); For stable and non aligned operation, OPO is constructed in the same housing as the laser.

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1050nm high-power single cavity dual comb femtosecond pulse laser at 1GHz 100fs 2W

This 1050nm high-power single cavity dual comb femtosecond pulse laser (1 GHz) is an ideal tool for testing dual comb spectra and ranging. The system generates a pair of mode-locked femtosecond lasers (optical frequency combs) with slightly different pulse repetition rates. In the time domain, optical delay rapidly sweeps through the range of 1 nanosecond at a very high speed. In the frequency domain, the beat sound between each pair of comb lines is generated through heterodyne detection. Due to the high repetition rate, high power per comb line was obtained. Through a novel shared cavity structure, our system can easily achieve ultra-low noise in free running operation. Moreover, laser pairs are passively stable and exhibit highly correlated intensity, timing, and phase noise between two comb like structures. Due to having only one laser cavity and no high-speed locking electronics or optical amplification, most of the complexity of traditional dual comb and ASOPS systems is eliminated, while providing small footprint and excellent performance.

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