繁体中文

Ultraviolet spectroscopy: a leap in accuracy and precision under extremely low light levels

326
2024-03-08 14:18:39
查看翻譯

Ultraviolet spectroscopy plays a crucial role in the study of electronic transitions in atoms and rovibronic transitions in molecules. These studies are crucial for the testing of fundamental physics, quantum electrodynamics theory, determination of fundamental constants, precision measurements, optical clocks, high-resolution spectroscopy supporting atmospheric chemistry and astrophysics, and strong field physics.

The scientists of the Nathalie Picqu é group at the Max Planck Institute for Quantum Optics have made a significant leap in the field of ultraviolet spectroscopy, successfully achieving high-resolution linear absorption double comb spectroscopy in the ultraviolet spectral range. This breakthrough achievement has opened up new possibilities for conducting experiments under low light conditions and paved the way for new applications in various scientific and technological fields.

Double comb spectroscopy is a powerful technique for precise spectral analysis over a wide spectral bandwidth, mainly used for infrared absorption of small molecules in the gas phase. It relies on measuring transient interference between two frequency combs with slightly different repetition frequencies.

A frequency comb is a spectrum of laser lines that are uniformly distributed and phase coherent, and its function is similar to a ruler, which can measure the frequency of light extremely accurately. The dual comb technology is not limited by the geometry of traditional spectrometers, providing enormous potential for high precision and accuracy.

However, dual comb spectroscopy typically requires a strong laser beam, making it less suitable for scenarios with low light levels that are crucial. The MPQ team has now demonstrated through experiments that dual comb spectroscopy can be effectively used under low light conditions that are more than one million times weaker than commonly used power levels.

This breakthrough was achieved using two different experimental devices and different types of frequency comb generators. The team has developed a photon level interferometer that can accurately record statistical data of photon counting and display the signal-to-noise ratio at the basic limit. This achievement highlights the optimal utilization of available light in experiments and opens up prospects for dual comb spectroscopy in challenging scenarios where low light levels are crucial.

MPQ researchers have solved the challenges associated with generating ultraviolet frequency combs and constructing dual comb interferometers with long coherence times, paving the way for achieving this coveted goal. They cleverly controlled the mutual coherence of two comb lasers, with each comb line having a flying tile, proving the optimal accumulation of interference signal counting statistics over an hour.

"Our innovative low light interferometry method overcomes the challenges of low nonlinear frequency conversion efficiency and lays a solid foundation for extending the dual comb spectrum to shorter wavelengths," commented Xu Bingxin, a postdoctoral scientist who led the experiment.

In fact, an exciting future application is to develop short wavelength dual comb spectra to achieve precise vacuum and extreme ultraviolet molecular spectra over a wide spectral range. At present, broadband extreme ultraviolet spectroscopy is limited in resolution and accuracy, and relies on unique instruments in professional facilities.

"Although UV dual comb spectroscopy is a challenging goal, it has now become a realistic goal due to our research. Importantly, our research results extend the full functionality of dual comb spectroscopy to low light conditions, opening up new applications in precision spectroscopy, biomedical sensing, and environmental atmospheric detection," concluded Nathalie Picqu é.
The research results are published in the journal Nature.

Source: Laser Net

相關推薦
  • French research team successfully develops new orange laser

    A research team in France has reported a novel laser that emits light in the orange region of the spectrum, indicating its potential applications in flow cytometry and astronomical laser guidance.In the research results just published in Optics Express, the team (including researchers from the É cole Polytechnique in Caen, France and Oxxius, a laser manufacturer based in Lannion) claimed that the ...

    03-04
    查看翻譯
  • LPKF 2024 H1 revenue up 15% year-on-year

    Recently, LPKF Laser, a leading supplier of innovative laser solutions in Germany, released its performance report for the first half of the 2024 fiscal year as of June 30, demonstrating the company's steady performance and forward-looking layout in a complex market environment. According to the financial report, LPKF Laser&Electronics SE achieved significant growth in comprehensive revenue ...

    2024-07-31
    查看翻譯
  • Xiaomi has recently invented a laser engraving machine that allows you to create screen printing and design using different materials

    3D printers have become popular worldwide, allowing you to create useful and beautiful products. This has sparked a trend towards DIY, which is "doing it yourself," even driving popular pages such as Etsy in Spain. In fact, an economy has been established around these types of handmade products. But there are more devices that can help with these types of creativity.The latest one is Xiaomi's inve...

    2023-12-26
    查看翻譯
  • Shanghai Optics and Machinery Institute has made progress in the development of picosecond reflectors based on composite materials

    Recently, the High Power Laser Element Technology and Engineering Department of the Shanghai Institute of Optics and Mechanics, Chinese Academy of Sciences, has made progress in the research of picosecond reflectors based on composite materials. The relevant research results are titled "Hybrid material based mirror coatings for picosecond laser applications" and published in Optics and Laser Techn...

    2024-06-12
    查看翻譯
  • Combined spectral lasers can unlock the potential of laser plasma accelerators

    A team of researchers in Berkeley Lab's Accelerator Technology and Applied Physics (ATAP) division has developed a new technique that combines fiber lasers of different wavelengths to generate ultra-short laser pulses. The research is in the journal Optics Letters.This work could advance the development of laser plasma accelerators (LPA), which have the potential to push the frontiers of high-en...

    2023-08-04
    查看翻譯