Jove
Visualize
Contact Us
JoVE
x logofacebook logolinkedin logoyoutube logo
ABOUT JoVE
OverviewLeadershipBlogJoVE Help Center
AUTHORS
Publishing ProcessEditorial BoardScope & PoliciesPeer ReviewFAQSubmit
LIBRARIANS
TestimonialsSubscriptionsAccessResourcesLibrary Advisory BoardFAQ
RESEARCH
JoVE JournalMethods CollectionsJoVE Encyclopedia of ExperimentsArchive
EDUCATION
JoVE CoreJoVE BusinessJoVE Science EducationJoVE Lab ManualFaculty Resource CenterFaculty Site
Terms & Conditions of Use
Privacy Policy
Policies

Related Concept Videos

Inductively Coupled Plasma Atomic Emission Spectroscopy: Instrumentation01:26

Inductively Coupled Plasma Atomic Emission Spectroscopy: Instrumentation

416
Inductively coupled plasma (ICP) is the common plasma source used in atomic emission spectroscopy (AES), a technique that detects and analyzes various elements in a sample. This method is often called inductively coupled plasma atomic emission spectroscopy (ICP-AES).
There are three main types of inductively coupled plasma atomic emission spectroscopy  (ICP-AES) instruments: sequential, simultaneous multichannel, and Fourier transform instruments, with the latter being less commonly used....
416
Atomic Emission Spectroscopy: Instrumentation01:22

Atomic Emission Spectroscopy: Instrumentation

771
The instrumentation of atomic emission spectrometry (AES) involves various components, including atomization devices that convert samples into gas-phase atoms and ions. There are two main types of atomization devices: continuous and discrete atomizers.  Continuous atomizers, like plasmas and flames, introduce samples in a constant stream, while discrete atomizers inject individual samples using syringes or autosamplers. The most common discrete atomizer is the electrothermal atomizer.
771
Tandem Mass Spectrometry01:21

Tandem Mass Spectrometry

1.7K
Tandem mass spectrometry is a technique that uses multiple mass analyzers in series to obtain a higher selectivity and signal-to-noise ratio for the analyte. Instruments with multiple analyzers separated by an interaction cell enable secondary fragmentation and selected study of the fragment ions.
Secondary fragmentations occur in the interaction cell and can be induced by various factors. Fragmentation induced by collision with inert gases, such as N2, Ar, He, etc., is called collision-induced...
1.7K
Atomic Emission Spectroscopy: Lab01:29

Atomic Emission Spectroscopy: Lab

345
AES is a powerful analytical technique, especially effective when used with plasma sources, producing abundant spectra in characteristic emission lines. The Inductively Coupled Plasma (ICP), in particular, yields superior quantitative analytical data due to its high stability, low noise, low background, and minimal interferences under optimal experimental conditions. However, newer air-operated microwave sources are emerging as promising alternatives that could be more cost-effective than...
345
Mass Analyzers: Common Types01:19

Mass Analyzers: Common Types

1.0K
The quadrupole mass analyzer consists of four cylindrical metal rods arranged in a diamond carrying a DC voltage and a radio-frequency AC voltage. The motion of ions through the quadrupole depends on the field strength, causing only ions of a certain m/z to resonate successfully and strike the detector at a given field strength. Though the transmission rate for these analyzers is high, the exact elemental composition of the sample is not determined because of low resolution; however, they are...
1.0K
Atomic Absorption Spectroscopy: Instrumentation01:22

Atomic Absorption Spectroscopy: Instrumentation

1.2K
An atomic absorption spectrophotometer (AAS) comprises several components: a radiation source, an atomizer, a monochromator, and a detector. The radiation source can be a hollow-cathode lamp (HCL) or an electrodeless-discharge lamp (EDL), both of which provide a narrow emission line of the required wavelength. However, some instruments use continuum sources and high-resolution monochromators to achieve a narrow range of radiation.
The atomizer used in AAS can be either a flame atomizer or an...
1.2K

You might also read

Related Articles

Articles linked to this work by shared authors, journal, and citation graph.

Sort by
Same author

Additive Manufacturing of Multimaterial Composites for Radiation Shielding and Thermal Management.

ACS applied materials & interfaces·2023
Same author

Optimization of ultraviolet Raman spectroscopy for trace explosive checkpoint screening.

Analytical and bioanalytical chemistry·2020
Same author

Photothermal speckle modulation for noncontact materials characterization.

Optics letters·2015
Same author

High efficiency coherent beam combining of semiconductor optical amplifiers.

Optics letters·2012
Same author

High speed, high power one-dimensional beam steering from a 6-element optical phased array.

Optics express·2012
Same author

Diffractive coherent combining of a 2.5 kW fiber laser array into a 1.9 kW Gaussian beam.

Optics letters·2012

Related Experiment Video

Updated: Nov 1, 2025

Author Spotlight: Fabrication of a Low-Cost, Fiber-Coupled, and Air-Spaced Fabry-Pérot Etalon
07:22

Author Spotlight: Fabrication of a Low-Cost, Fiber-Coupled, and Air-Spaced Fabry-Pérot Etalon

Published on: February 3, 2023

7.3K

Compact computational spectrometer using a solid wedged low finesse etalon.

Shawn M Redmond, Salvatore Di Cecca, William D Herzog

    Applied Optics
    |June 18, 2021
    PubMed
    Summary

    A new compact computational spectrometer uses a hybrid wedged etalon for improved spectral resolution. This innovative design surpasses traditional Fourier methods for enhanced performance in spectral analysis.

    More Related Videos

    High Speed Sub-GHz Spectrometer for Brillouin Scattering Analysis
    13:31

    High Speed Sub-GHz Spectrometer for Brillouin Scattering Analysis

    Published on: December 22, 2015

    15.3K
    High Resolution Phonon-assisted Quasi-resonance Fluorescence Spectroscopy
    10:40

    High Resolution Phonon-assisted Quasi-resonance Fluorescence Spectroscopy

    Published on: June 28, 2016

    7.7K

    Related Experiment Videos

    Last Updated: Nov 1, 2025

    Author Spotlight: Fabrication of a Low-Cost, Fiber-Coupled, and Air-Spaced Fabry-Pérot Etalon
    07:22

    Author Spotlight: Fabrication of a Low-Cost, Fiber-Coupled, and Air-Spaced Fabry-Pérot Etalon

    Published on: February 3, 2023

    7.3K
    High Speed Sub-GHz Spectrometer for Brillouin Scattering Analysis
    13:31

    High Speed Sub-GHz Spectrometer for Brillouin Scattering Analysis

    Published on: December 22, 2015

    15.3K
    High Resolution Phonon-assisted Quasi-resonance Fluorescence Spectroscopy
    10:40

    High Resolution Phonon-assisted Quasi-resonance Fluorescence Spectroscopy

    Published on: June 28, 2016

    7.7K

    Area of Science:

    • Optics and Photonics
    • Spectroscopy
    • Materials Science

    Background:

    • Traditional spectrometers often face limitations in compactness and spectral resolution.
    • Hybrid solid-state etalons offer potential for novel spectroscopic instrumentation.
    • Computational imaging techniques are advancing spectral analysis capabilities.

    Purpose of the Study:

    • To develop and demonstrate a novel compact computational spectrometer.
    • To investigate the performance of a two-layer hybrid solid wedged etalon.
    • To implement advanced spectral reconstruction algorithms for improved resolution.

    Main Methods:

    • Fabrication of a two-layer hybrid solid wedged etalon using ${{\rm Nb}_2}{{\rm O}_5}$ and Infrasil 302.
    • Integration of the etalon with a complementary metal-oxide semiconductor (CMOS) imager.
    • Spectral reconstruction using a non-negative least-squares fitting algorithm with analytically computed wavelength response vectors.

    Main Results:

    • Demonstrated operation of the compact computational spectrometer from 0.4-0.9 µm.
    • Achieved spectral resolutions below 30 cm$^{-1}$ from single snapshots.
    • The novel computational technique outperformed conventional Fourier processing methods.

    Conclusions:

    • The developed hybrid wedged etalon computational spectrometer offers superior performance and spectral resolution.
    • The non-negative least-squares fitting algorithm provides an effective approach for spectral reconstruction.
    • The system's potential for conversion into a hyperspectral imager highlights its versatility.