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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Spectroscopy
NIRS Analyzer PRO
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The NIRS Analyzer PRO is a system for the nondestructive, direct analysis of granules, powders, liquids, slurries, or opalescent substances.
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Raman Spectroscopy
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Raman spectroscopy is a form of vibrational spectroscopy, like infrared (IR) absorption, that provides detailed chemical and structural characterisation. The Raman technique has the benefit of being non-destructive and requiring no sample preparation.
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Impedance Spectroscopy
NuVant EZware-EIS Software Package
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The NuVant EZware-EIS software package activates Electrochemical Impedance Spectroscopy on the EZstat-Pro, Powerstat-05 and -20 potentiostat/galvanostats. EZware-EIS exports the impedance data to a file format to accommodate free third party EIS analysis software. EZware-EIS is a user-friendly interface that allows selection of the proper scanning parameters, collect the impedance spectra, display data in Nyquist and/or Bode plots and export data in the proper data format for use in EIS analysis software.
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Spectroscopy
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*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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Molecular Spectroscopy
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Characterize advanced complex materials on any budget. Our comprehensive portfolio of analytical solutions has the ideal molecular spectroscopy instruments for any lab to measure UV, infrared, and fluorescence.*Higher accuracy, increased sensitivity*Sample size flexibility*Wide array of sampling techniques*Shorter sample setup time*Easy-to-use software providing expert results
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Spectroscopy
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Spectrometers are used to measure the properties of light for a variety of applications including environmental or chemical analysis, fluorescence, or Raman. Spectrometers are optical instruments that can detect spectral lines and measure their wavelength or intensity. Spectrometers are ideal for determining compositional makeup for detecting weak light signals. Spectrometers can also be used to test the efficiency of an optical filter in order to determine whether a filter has properly blocked or transmitted specific wavelengths.
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Diode Laser Spectroscopy
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Diode Laser Spectroscopy by Mesa Photonics: Herriott Cell and OEM laser diode controller boards.
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Atomic Spectroscopy
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Tens of thousands of installations worldwide rely on PerkinElmer spectrometers to obtain accurate results from inorganic elemental analyses quickly, efficiently, effortlessly. No matter what your field, application or sample type, we have the tools and expertise to help -- all based on more than 50 years at the forefront of atomic spectroscopy technology. Take advantage of our complete array of solutions for unparalleled performance, accuracy, and confidence.
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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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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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Molecular Spectroscopy Software
Spectra Manager™ Suite
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A unique and powerful, cross-platform suite of software tools for controlling a truly comprehensive range of molecular spectroscopy instrumentation. Design experimental methods, acquire data and get results quickly.
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X-ray Fluorescence Spectroscopy (XRF) Services
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Work we''ve done: Coating identification, Measuring lead levels in paint and solder, Elemental comparison of two metal ingots, Restriction of Hazardous Substance (RoHS) testing.
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Molecular Spectroscopy Data Systems
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Identify/classify covalently bonded minerals via their mid infrared spectrum - carbonates, sulfates, nitrates, silicates, phosphates, borates, vandates, arsenates, tungstates, molybdates, uranates, hydroxides, oxides, etc
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Gamma Spectroscopy
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Provides the core software functionality for a comprehensive, high quality, and defensible gamma or alpha spectrometry system.
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Energy Dispersive X-Ray Spectroscopy (EDS)
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Rocky Mountain Laboratories, Inc.
Energy Dispersive Spectroscopy (EDS Analysis) is used in conjunction with the Scanning Electron Microscope (SEM) providing chemical analysis in areas as small as 1 µm in diameter. EDS detects all elements except for H, He, Li, and Be. EDS can be performed exactly on any features or particles seen in the SEM images and can “MAP” elements on a surface. Unknown materials can be identified and quantitative analysis can be performed.
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Auger Electron Spectroscopy (AES)
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Rocky Mountain Laboratories, Inc.
Auger Analysis, Auger Electron Spectroscopy (AES or Auger) is a chemical surface analysis method. AES measures the chemical composition of the outermost 100 Å of a sample. Measurements can be made at greater depths by ion sputter etching to remove surface layers.
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Energy Dispersive X-ray Fluorescence Spectroscopy
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Energy Dispersive X-ray Fluorescence Spectroscopy
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X-ray Photoelectron Spectroscopy Analysis (XPS Analysis)
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Rocky Mountain Laboratories, Inc.
X-ray photoelectron spectroscopy (XPS Analysis) also called Electron Spectroscopy for Chemical Analysis (ESCA) is a chemical surface analysis method. XPS measures the chemical composition of the outermost 100 Å of a sample. Measurements can be made at greater depths by ion sputter etching to remove surface layers.
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Spectroscopy Upgrade for Any Microscope
SMS
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Get a simple upgrade to your existing microscope, or a turnkey microspectrophotometer system that works out-of-the-box.
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Portable Functional Near-Infrared Spectroscopy System For Research
LIGHTNIRS
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Shimadzu Portable functional Near-Infrared Spectroscopy (fNIRS) System for Research* Near infrared light, which readily diffuses easily through biological tissue, can be used to measure localized blood oxygenation levels of the brain to monitor where activity occurs in response to a task of stimulus. The portability of LIGHTNIRS allows visualizing brain function activity in real time in a more natural state than other methods. Consequently, it is being used in a wide range of applications including medical research, developmental psychology, education, cognitive science and engineering.
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Ambient Pressure Photoemission Spectroscopy
APS
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The Ambient Pressure Photoemission Spectroscopy (APS) systems are KP Technology's newest addition to our large surface analysis range. The dual-mode APS systems measure the absolute work function of a material by photoemission in air, no vacuum is required. These systems hold domestic and international patents.
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Ambient Pressure Photoemission Spectroscopy With Nitrogen Environment
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The APS04-N2-RH incorporates a tuneable deep ultra-violet (UV) source outputting 3.4 - 7.0 eV, for absolute work function and highest occupied molecular orbital (HOMO) measurements, a surface photovoltage spectroscopy (SPS) module outputting 400 - 1000 nm for Voc and Eg measurements, together with a 50 x 50 mm scanning area for planar relative work function measurements (Fermi level).
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Saturable Spectroscopy Laser Lock Module
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A compact, mechanically-robust laser frequency reference.
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Localized Electrochemical Impedance Spectroscopy
VS-LEIS
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The VersaSTAT 3F applies an AC voltage to the sample emerged in electrolyte. This "global" voltage generates AC current to flow at the electrode / electrolyte interface. A dual-element probe is positioned in solution close to the surface of the sample. The electrometer measures a differential voltage measure between the two measurement elements as a measure of local voltage-drop in solution. This voltage-drop exists in solution because of current flow from local reactions at the sample, the resistance of the electrolyte and the spatial separation of the dual measurement elements.





























