
Extend the wavelength range with widely tunable OPOs from InnoLas Laser. Our strength is customization to user requirements.
LIF
Laser Induced Fluorescence is a technique in which a laser is used to excite molecules, causing them to emit light (fluorescence), which is then analyzed to detect and study chemical properties or substances in a sample.
LIBS
Relying on a high-intensity laser to ionize a sample and create plasma, Laser Induced Breakdown Spectroscopy is an analytical technique in which the emitted light is analyzed to determine the sample’s elemental composition.
MALDI
Matrix-Assisted Laser Desorption/Ionization is a mass spectrometry technique that uses a laser to ionize and evaporate a sample embedded in a matrix, allowing the analysis of large molecules such as proteins and polymers.
CARS
Coherent Anti-Stokes Raman Spectroscopy is a non-linear optical technique that uses laser pulses to generate a scattered signal that provides detailed information about molecular vibrations and the chemical composition of a sample.
RAMAN
Raman spectroscopy is an analytical technique that uses the scattering of monochromatic light to study vibrational, rotational and other low frequency modes in molecules, providing insight into their chemical composition and structure.

SLR
Employing laser pulses to measure distances, Ranging Surface-Long Range is a remote sensing technology that creates detailed 3D maps of large surface areas, commonly applied in fields like topography, forestry and environmental monitoring.
Atmospheric Research
Atmospheric Research uses laser-based technology to measure and analyse properties of the Earth’s atmosphere, such as cloud formation, aerosol concentrations and pollutant levels, by detecting the scattering of laser light as it interacts with atmospheric particles.
DIAL
Differential Absorption LIDAR is a remote sensing technique that uses two laser wavelengths to measure atmospheric components such as gases, by detecting differences in absorption at each wavelength, allowing the precise detection of pollutants and other trace elements.
Aerial Mapping
Aerial Mapping is a remote sensing technique that uses airborne laser scanners to measure distances and create detailed, high-resolution 3D maps of the Earth’s surface, often used in surveying, topography and environmental monitoring.

Get a perfect picture of flow dynamics in gases and liquids with InnoLas laser sources.
Our specially designed SpitLight PIV series lasers provide double pulses at visible wavelengths (others on request), perfectly controlled in time and space - exact in temporal delay, exact in spatial overlap. Robust. Long-term stable.
PTV
Particle Tracking Velocimetry is an imaging technique used to measure the velocity and motion of particles in a fluid by tracking their positions over time, providing insight into flow dynamics and fluid behavior.
HOLO PIV
Using holography to capture 3D particle motion in a fluid flow, Holographic Particle Image Velocimetry is an advanced imaging technique that provides high-resolution velocity measurements and detailed flow field analysis.
LDV
Laser Doppler Velocimetry Particle Image Velocimetry combines Laser Doppler Velocimetry and Particle Image Velocimetry techniques to measure fluid flow velocities by analyzing the motion of particles illuminated by a laser, providing both local and field-wide flow data.
SLIPI
Single-Lens Imaging Particle Image Velocimetry is a flow measurement technique that uses a single camera and laser to capture particle motion in a fluid, providing velocity data and flow dynamics with improved spatial resolution.

Thomson scattering
Laser Thomson Scattering is a diagnostic technique that uses laser light to measure the density, temperature and velocity of particles or ions in a plasma by analyzing the scattered light, providing insight into the behaviour and properties of the plasma. As our lasers can be upgraded with Innolas’ Burst Mode, we offer a cost-effective way to combine high pulse energies – typically generated at low repetition rates – with kHz repetition rates to improve timing resolution.
Particle Physics
Laser Particle Physics applications use high-intensity laser beams to manipulate and study particles, often in conjunction with other tools, to investigate fundamental physical principles, accelerate particles or enable precise measurements in experiments such as laser-plasma interactions and particle detection.
Ti:Sa pumping
The applications of Ti:Sa lasers are numerous and range from basic scientific research to industrial and medical applications. InnoLas lasers are tailor-made for scientific applications that require high pulse energies, lowest possible energy deviations, lowest positional drift and a homogeneous beam profile at 532 nm on industrial level. InnoLas products help push the boundaries of Ti:Sa terawatt amplifiers further and help reduce their complexity – through a reliable green pump laser.

Holography
Coherent Laser Holography is a technique that uses coherent laser light to capture and reconstruct the 3D image of an object by recording the interference pattern between the object’s reflected light and a reference beam, allowing for detailed analysis of its shape and structure.
LIL
Using the interference of coherent laser light, Coherent Laser Interference Lithography is a technique that creates fine patterns on a substrate, typically for micro- and nano-fabrication, enabling the production of high-resolution structures without the need for masks.




