Spectroscopy
The use of the absorption, emission, or scattering of electromagnetic radiation by atoms or molecules (or atomic or molecular ions) to qualitatively or quantitatively study the atoms or molecules, or to study physical processes. Virginia Tech
See Also: Dissolved Gas, Terahertz
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Tunable Detectors
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Due to their spectral properties and robustness, pyroelectric detectors have proven themselves for many years in numerous applications in gas analysis, flame detection and spectroscopy. They enable the tuning of the optical filter over a defined spectral range by simply adjusting the control voltage. Instead of mounting filters to inspect specific areas of interest as is conventionally common, the detector with tunable Fabry-Pérot filters (FPF) can be used to monitor a broad spectral region continuously.
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LIBS Analyzer
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LIBS is a type of optical emission spectroscopy used to measure elemental concentrations in a material.
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NIRONE Sensor S
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The NIRONE Sensor S brings material measurements from the laboratory to the field: it is small, mobile, innovative, robust and cost-effective. It is enabling fast and reliable measurements at the near infrared (NIR) spectral range from 1350 to 2450 nm and works even in the most demanding environments. NIRONE Sensor S offers excellent performance fully comparable to the best laboratory instruments in a small package and only a fraction of the cost. It can create new applications for materials analysis by NIR spectroscopy, including
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Molecular Spectroscopy
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A comprehensive range of molecular spectroscopy instruments for applications in the Far-UV to the Terahertz region.
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Tunable Diode Laser
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Tunable diode laser absorption spectroscopy (TDLAS) is a fast, accurate, non-contact gas analysis technique that responds quickly to changing analyte concentrations. It is a proven technology free of interferences from other sample stream components.
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Scientific Solutions
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Our backside illuminated (BSI) and backthinned Charge Coupled Devices (CCDs) and front and back illuminated CMOS image sensors (CIS) are seen as the gold standard for scientific and quantum imaging in applications in spectroscopy, microscopy, in vivo, x-ray and astronomy. We understand that every imaging application is unique and requires our engineers and scientists to work closely with our customers providing highly tailored imaging solutions.
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Modular Spectrometers
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B&W Tek boasts one of the most comprehensive lines of UV, Vis and NIR spectrometer modules on the market. Combined with our wide selection of spectroscopy accessories, we offer you nearly limitless utility. Due to their small form factor and customizable software control systems, fiber optic spectrometers are the ideal choice for both integration into your OEM system and for the laboratory, where you can combine modular products to form a complete solution.
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Photoluminescence Spectrometer
FLS1000
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The FLS1000 sets the standard in both steady state and time-resolved photoluminescence spectroscopy for both fundamental research and routine laboratory applications. The system is a modular fluorescence and phosphorescence spectrometer for measuring spectra from the ultraviolet to the mid-infrared spectral range (up to 5,500 nm), and lifetimes spanning from picoseconds to seconds. All of this can be achieved through various upgrade routes, either at the time of order or in the future. Whether you are studying photophysics, photochemistry, biophysics, biochemistry, material or life sciences, the FLS1000 will enable you to reliably and accurately measure luminescence spectra and kinetics using state-of-the-art sources, detectors, acquisition techniques, quality optics and precision mechanics. The large sample chamber will house practically any type of sample accessory.
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High Throughput Optical Streak Camera
AXIS-NV
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AXIS-NV is used for time-resolved spectroscopy of subnanosecond eventsin the visible and IR range.
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Precisive® 5 Application Specific Gas Analyzers
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The Precisive® Gas Analyzer is a real-time gas analyzer based on MKS' unique Tunable Filter Spectroscopy (TFS™) platform. The Precisive suite of products are calibrated for the measurement of a wide range of gases across multiple process industries. The real-time, continuous measurement capability provides immediate analysis ensuring control of critical process parameters.
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Delays And Gates
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Delays, Gate and Delay Generators, Logic Modules, and Linear Gates are used in many research or teaching experiments and in non-research applications such as actively shielded spectroscopy systems. Delay modules allow the alignment in time of signals from different paths, so that a logical decision can be made within a logic module which will often result in an electronic go/no-go decision as to whether a particular detector analog output will be processed within an associated multichannel analyzer.
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Fluorescence Spectrometers
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Our experience and expertise as manufacturers of fluorescence spectrometers is second to none. Spanning more than 50 years, we have over 1000 high-end spectrometers installed in universities and leading research laboratories worldwide. Our sales team would be delighted to assist you with your fluorescence spectroscopy analysis and instrumentation requirements.
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Energy Dispersive X-ray Fluorescence Spectroscopy Systems
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Energy Dispersive X-ray Fluorescence Spectroscopy Systems
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Gamma Spectroscopy
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Gamma spectroscopy is the science (or art) of identification and/or quantification of radionuclides by analysis of the gamma-ray energy spectrum produced in a gamma-ray spectrometer.
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XPS/ESCA Service
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X-ray Photoelectron Spectroscopy (XPS Analysis), also known as Electron Spectroscopy for Chemical Analysis (ESCA), is used to determine quantitative atomic composition and chemistry. It is a surface analysis technique with a sampling volume that extends from the surface to a depth of approximately 50-70 Angstroms. Alternatively, XPS analysis can be utilized for X-ray Photoelectron Spectroscopy (XPS) or Electron Spectroscopy for Chemical Analysis (ESCA) from Evans Analytical Group (EAG).sputter depth profiling to characterize thin films by quantifying matrix-level elements as a function of depth.
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X-Ray Photoelectron Spectrometer
AXIS Supra
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AXIS SupraTM is an X-ray photoelectron spectrometer (XPS) with unrivalled automation and ease of use for materials surface characterisation. The patented AXIS technology ensures high electron collection efficiency in spectroscopy mode and low aberrations at high magnifications in parallel imaging mode. XPS spectroscopy and imaging results can be complemented by additional surface analysis techniques such as: ultraviolet photoemission spectroscopy (UPS); Schottky field emission scanning Auger microscopy (SAM) and secondary electron microscopy (SEM) and ion scattering spectroscopy (ISS). The AXIS Supra replaces the AXIS Ultra DLD as Kratos' flagship x-ray photoelectron spectrometer.
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Optical Spectroscopy Software
Spekwin32
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One of this software''s main goals is the consistent display of spectra coming from different sources. At the moment, about 36 different spectral file types from commercially available spectrometer systems can be read. By using Copy&Paste via the clipboard, arbitrary data can also be introduced into Spekwin32 for fast visualization.
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Femtosecond Extended Spectroscopic Systems
Harpia
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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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Energy Dispersive X-ray Fluorescence Spectroscopy Consumables
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Energy Dispersive X-ray Fluorescence Spectroscopy Consumables
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AvaSpec-ULS
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Step into the realm of advanced spectroscopy with the AvaSpec-ULS from Avantes, available in 2 versions; ULS2048CL with a 2k pixel detector and the ULS4096CL with a 4k pixel detector. The AvaSpec-ULS is available as an OEM unit – optimized for integration, bench-only – optimized for customized software communication, or rackmount version which offers the opportunity to stack spectrometers and perform multiple measurements at the same time.
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Magnetic Field Camera: mapping for MRI applications
MFC2046
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MRI and NMR spectroscopy applications require a highly uniform magnetic field, within at most a few ppm. NMR is the only magnetic measurement technique capable of providing a field map with that degree of precision. Introduced 25 years ago, Metrolab’s NMR Magnetic Field Cameras have revolutionized field mapping for MRI magnets. They reduced acquisition times from hours to minutes, positioning errors to fractions of a millimeter, and they rendered human and drift errors negligible. Now, meet the latest generation NMR Magnetic Field Camera, the MFC2046! Map any magnet with the New generation of MFC probe arrays. Magnetometer Teslameter Gaussmeter
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CRDS Gas Analyzers
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Based on absorption spectroscopy, our Tiger Optics Cavity Ring-Down Spectroscopy (CRDS) works by attuning light rays to the unique molecular fingerprint of the sample species. By measuring the time, it takes the light to fade or “ring-down”, you receive an accurate molecular count in milliseconds.
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Wavelength Dispersive X-ray Fluorescence Spectroscopy
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Wavelength Dispersive X-ray Fluorescence Spectroscopy
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Broad Area Laser Power Littrow Series
Cougar
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The TEC-200 External Cavity Diode Laser in Littrow configuration is designed for high output power up to 1500mW with moderate linewidth in the order of 10GHz. It is employed for Raman Spectroscopy. Please check our downloadable data sheets.
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Imaging X-Ray Photoelectron Spectrometer
Kratos AXIS Nova
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X-ray photoelectron spectroscopy (XPS), also known as electron spectroscopy for chemical analysis (ESCA), is a mature and widely used surface analysis technique for materials characterisation. XPS provides quantitative elemental and chemical state information from the upper most 10 nm of material. The The AXIS Nova photoelectron spectrometer can collect X-ray photoelectron spectra and images from any material that is stable under the ultra-high vacuum conditions required for the technique.
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Alpha Spectroscopy
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Alpha spectroscopy is used to identify and quantify radionuclides based on the alpha particles emitted in the decay process. Similar to Gamma Spectroscopy, energy spectra are generated with high precision detectors and electronics and analyzed with special software. Typically, samples are measured following chemical separation to isolate the radionuclides of concern due to the complexity associated with correcting for these interferences with spectrum analysis software as is common for many Gamma Spectroscopy measurements.
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Energy Dispersive X-ray Spectroscopy
EDS
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Materials Evaluation and Engineering
EDS is an elemental chemical microanalysis technique performed in conjunction with each of the SEMs at MEE. Features or phases as small as about 1 micron can be analyzed.
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Atomic Force Microscope (AFM)
CombiScope
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The CombiScope Atomic Force Microscope (AFM) is an advanced research instrument that provides the entry path for researchers in biology, spectroscopy and photonics. If you work with transparent samples either in air or in liquid towards nano-scale structures and (near-field) nano-optical properties investigation, the CombiScope is the right solution for you. It perfectly combines inverted optical and atomic force microscopies and unleash all the power of both techniques providing the instrument adjustment and measurement automation, high resolution and high speed. Plus it can be easily upgraded to our Raman spectrometers.
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Spectroscopic Platform
Allalin
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The Allalin is a nanometer resolution spectroscopy instrument, based on a disruptive technology known as quantitative cathodoluminescence that integrates a light microscope and a scanning electron microscope (SEM) into one tool.
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NeaSNOM Microscope
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Based on high-stability scanning-sample Atomic Force Microscope optimized for optical nanoscopyOptical focusing unit accepts visible, infrared and even terahertz illuminationTwo independent module bays allow imaging & spectroscopy at the same time





























