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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Atomic Spectroscopy
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Agilent’s comprehensive atomic spectroscopy software portfolio leads the industry in the simple setup and productivity tools required by routine analytical laboratories, while also providing the flexibility needed for advanced method development in research and academia. Our advanced ICP-MS software, including the powerful ChemStation and MassHunter systems, are used in all of our mass-spec platforms, so you can benefit from a single solution and reduce staff training requirements. Our cutting edge ICP software also enables intuitive control in ICP-MS processes.
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Custom Spectroscopy Solutions
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Scientific discovery doesn’t always follow traditional pathways. The Optical Spectroscopy Division custom configures spectrometers, monochromators, microspectroscopy, CCD’s and other instruments for fluorescence spectroscopy and other R&D and QC applications. We design systems that meet your individualized research or application needs. We create the tools required to make investigations where standardized tools do not meet your needs or where no tools currently exist.
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Molecular Spectroscopy
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Molecular Spectroscopy requires a range of technologies, including pick-and-place automation for moving sample tubes, sample injection automation to reduce sample contamination and consumption of rinse-solutions, and basic autosamplers for delivering samples to the analyzer. A variety of pumping technologies are also used to manage the delivery of samples and rinse solutions as needed.
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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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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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Fourier Transform Infrared Spectroscopy (FTIR)
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Rocky Mountain Laboratories, Inc.
FTIR Analysis is used to analyze organic materials. Bulk and small particle materials can be analyzed. FTIR microscopy analysis allows for the identification of particle as small as 10 µm.
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Atomic Spectroscopy
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For the past 40 years, we have provided products to the Atomic Spectroscopy industry that solve laboratory problems and improve the success of our OEM partners. These products include unique sample delivery solutions, sample preparation tools, autosamplers, and solutions to improve sample throughput and detection limitations, among others. In short, we strive to understand the markets our OEM partners serve in order to deliver products that meet their needs.
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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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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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Infrared, Near Infrared and Raman Spectroscopy
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rom the very compact FTIR spectrometer to the world’s highest resolution: Bruker offers the industry's largest selection for demanding routine and High End FTIR research application including the new and unique verTera cw THz functionality.Process monitoring with FTIR / FT-NIR process spectrometers.A complete line of Near Infrared Spectrometers to fit all your needs, including Process Monitoring.FTIR Microscopy and Raman Microscopy and Spectral Imaging for high sensitivity at high spatial resolution.High spectral resolution, high performance Raman and FT-Raman spectrometers for advanced routine solutions.FTIR Gas Analyzers for the fully automated and high precision real-time monitoring of gas compoundsImaging Remote Sensing systems for analysis of gases, liquids and solids.CryoSAS semiconductor material quality control for photovoltaic and electronics industry.OPUS, the "all-in-one" IR and Raman spectroscopy software consists of a suite of software packages that cover both standard and specialized applications.ONET, software for the setup, administration and control of large FT-NIR spectrometer networks.
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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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Molecular Spectroscopy
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Agilent’s best-in-class portfolio of molecular spectroscopy instruments have grown in breadth as well as capabilities. With leading innovations like the Cary 3500 UV-Vis and laser direct infrared (LDIR) chemical imaging, through to the 4300 handheld FTIR and our proprietary spatially offset and transmission Raman technologies, our spectroscopy systems are more qualified than ever to equip you with the right solution for your specific challenge.
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Deep-Level Transient Spectroscopy System
FT 1030
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The Deep-Level Transient Spectroscopy has grown up to a most powerful tool for semiconductor characterization with unbeaten sensitivity in trap concentration detection and high efficiancy in impurity parameter determination.
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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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VUV Spectroscopy Detector
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All gas phase molecules absorb strongly in the vacuum ultraviolet region (120 – 240 nm), yet application of VUV absorption technology to routine analytical detection and measurement has not been addressed…until now. The VGA-100 is the world’s first benchtop VUV spectrometer. It is a universal mass-sensitive gas chromatography detector that provides both qualitative and quantitative data. The strong absorption of gas phase molecules in the VUV spectrum provide excellent sensitivity, and the compound-specific absorption spectra provide unparalleled selectivity.
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Energy Dispersive Spectroscopy (EDS) Platform
Octane Elect EDS System
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The Octane Elect EDS System is an enhanced Energy Dispersive Spectroscopy (EDS) platform with the latest advancements in Silicon Drift Detector (SDD) technology and high speed electronics. Tailored for users who demand higher performance and functionality than the options available in entry-level systems, the Octane Elect EDS System provides excellent resolution and high throughput at an optimal value with a remarkable low energy sensitivity for light element detection and low voltage (kV) microanalysis.
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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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Energy Dispersive X-ray Fluorescence Spectroscopy
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Energy Dispersive X-ray Fluorescence Spectroscopy
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Broadband Dielectric Spectroscopy
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Material Sensing & Instrumentation
Broadband Dielectric Spectroscopy is a powerful tool for investigating a variety of dielectric processes for both electrical and non-electrical applications. Also called Impedance Spectroscopy, the measurement separates molecular process on the basis of response time, providing a unique relaxation frequency along with a signature variation with frequency.
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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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Spectroscopy Software for Software Control and Data Acquisition
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HORIBA Scientific offers a number of choices for software control and data acquisition for all of our components and custom spectroscopy solutions.
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Infrared, Near Infrared and Raman Spectroscopy
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From the very compact FTIR spectrometer to the world’s highest resolution: Bruker offers the industry's largest selection for demanding routine and High End FTIR research application including the new and unique verTera cw THz functionality.Process monitoring with FTIR / FT-NIR process spectrometers.A complete line of Near Infrared Spectrometers to fit all your needs, including Process Monitoring.FTIR Microscopy and Raman Microscopy and Spectral Imaging for high sensitivity at high spatial resolution.High spectral resolution, high performance Raman and FT-Raman spectrometers for advanced routine solutions.
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Tunable Diode Laser Absorption Spectroscopy
5100HD TDLAS
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Using tunable diode laser absorption spectroscopy (TDLAS) technology, the 5100HD can be configured with one or two absorption cells, providing dual stream analysis and/or the measurement of multiple analytes at the same time.
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Extensions for CathodoLuminescence, Photoluminescence & Raman Spectroscopy
Clue Series
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CLUE SERIES offers the unique capability to evolve with your requirements. Start with an affordable panchromatic CL detector to end up with a complete combination of all spectroscopic techniques, hyperspectral & panchromatic CL, Raman & photoluminescence. multiple UV, visible & NIR mono and multichannel detectors (CCD and PMT), vacuum technology (VUV), time-resolved fluorescence TCSPC (IBH fast electronics & detection components), Raman spectroscopy, photoluminescence, fast imaging with EMCCD and SWIFT, angular-resolved CL, high performance gratings…
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Raman Spectroscopy Analysis Laboratory
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Rocky Mountain Laboratories, Inc.
Raman is used to analyze organic and inorganic materials. Bulk and small particle materials can be analyzed. Raman microscopy allows for the identification of particle as small as 1 µm.
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SparkFun Triad Spectroscopy Sensor
AS7265x (Qwiic)
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The SparkFun Triad Spectroscopy Sensor is a powerful optical inspection sensor also known as a spectrophotometer. Three AS7265x spectral sensors are combined alongside a visible, UV, and IR LEDs to illuminate and test various surfaces for light spectroscopy. The Triad is made up of three sensors; the AS72651, the AS72652, and the AS72653 and can detect the light from 410nm (UV) to 940nm (IR). In addition, 18 individual light frequencies can be measured with precision down to 28.6 nW/cm2 and accuracy of +/-12%. Utilizing our handy Qwiic system, no soldering is required to connect it to the rest of your system. However, we still have broken out 0.1"-spaced pins in case you prefer to use a breadboard.





























