Türkçe

Automated methods for background estimation in laser spectroscopy

758
2023-11-24 14:35:28
Çeviriyi gör

A new automated method for spectral background estimation in laser spectroscopy ensures the accuracy of quantitative analysis with minimal human intervention.

When using laser-induced breakdown spectroscopy in spectral analysis, scientists may encounter various obstacles. The most common challenge faced by scientists when conducting elemental analysis is to optimize the interaction between the laser and the sample, pay attention to changes in laser energy, and the convergence of environmental noise, which helps to create different backgrounds in the collected spectra. All these obstacles will have a significant impact on the analysis.

In a recent study published in the Journal of Spectroscopy Part B: Atomic Spectroscopy, a research group from Jiangnan University introduced a new LIBS method aimed at automatically estimating and removing different spectral backgrounds. Under the leadership of Chen Hao from the School of Mechanical Engineering at Jiangnan University, researchers proposed a method that utilizes window functions, differential concepts, and piecewise cubic Hermite interpolation polynomials.

In this experiment, Chen and his team conducted a series of simulation experiments to evaluate background correction methods. They found that their proposed method performs better than existing techniques such as asymmetric least squares and modelless background correction. By utilizing window functions, Pchip, and differential concepts, the new method improves the ability to eliminate white noise and baseline distortion, achieving a better signal-to-noise ratio than previous methods.

The research team also found that their method improved the processing of background baseline jumps.
The researchers applied their method to seven different aluminum alloys and observed a correlation between spectral intensity and magnesium concentration.

It is worth noting that in the experiment of measuring magnesium concentration in aluminum alloys, the correlation coefficient between predicted concentration and actual concentration significantly improved after correction.

The coefficients for ALS and model free methods are 0.9913 and 0.9926, respectively, while the coefficients for this new method have decreased from the initial 0.9943 to 0.9154.

These findings not only validate the effectiveness of this automated method, but also pave the way for future research to improve the accuracy of LIBS spectral analysis.

Source: Laser Network

İlgili öneriler
  • Aerosol jet printing can completely change the manufacturing of microfluidic devices

    Surface acoustic wave technology is renowned for its high precision and fast driving, which is crucial for microfluidics and affects a wide range of research fields. However, traditional manufacturing methods are time-consuming, complex, and require expensive cleanroom facilities.A new method overcomes these limitations by utilizing aerosol jet printing to create customized equipment with various ...

    2024-02-02
    Çeviriyi gör
  • September 2024 China International Industry Fair Machine Tool Exhibition

    The CNC Machine Tool and Metal Processing Exhibition under the China International Industry Fair gathers global intelligent machine tool equipment and focuses on cutting-edge metal processing technology. The exhibition categories cover metal cutting, metal forming, laser processing, sheet metal stamping, machine tool supporting functional components and peripheral products, with a display area of ...

    2024-09-04
    Çeviriyi gör
  • Researchers Obtaining Scientific Returns from Raman Spectroscopy for External Bioexploration Using Lasers

    We investigated the potential of laser selection in a wide optical range from ultraviolet to visible light, and then to infrared (excitation wavelengths of 325, 532, 785, and 1064 nm), in order to combine and analyze extreme microorganisms related to Earth (such as Cryptomeria elegans, cold floating nematodes, and circular green algae), carbon water compound molecules, as well as simulated mineral...

    2023-10-23
    Çeviriyi gör
  • Shanghai Microsystems Institute has developed a high-speed photon detector with distinguishable photon numbers

    Recently, Li Hao and You Lixing's team from the Chinese Academy of Sciences Shanghai Institute of Microsystems and Information Technology developed an ultrahigh speed, photon number resolvable optical quantum detector with a maximum count rate of 5GHz and a photon number resolution of 61 by using the sandwich structure superconducting nanowires and multi wires working in parallel. The related rese...

    2024-07-12
    Çeviriyi gör
  • Overview of Inconel 939 Alloy Parts Developed by Additive Manufacturing Process

    The related paper was published in Heliyon under the title "A systematic review of Inconel 939 alloy parts development via additive manufacturing process".IN939 is a modern nickel based high-temperature alloy that can work continuously at high temperatures due to its excellent fatigue resistance, creep resistance, and corrosion resistance. The unique performance of IN939 is related to the composit...

    2024-12-10
    Çeviriyi gör