Deutsch

Researchers have implemented a creative approach to reduce stray light using spatial locking technology based on periodic shadows

471
2023-10-16 10:40:33
Übersetzung anzeigen

Reducing stray light is one of the main challenges in combustion experiments using laser beams (such as Raman spectroscopy) for detection. By using a combination of ultrafast laser pulses and gated ICCD or emICCD cameras, a time filter can be effectively used to remove bright and constant flame backgrounds. When the signal reaches the detector, these cameras can open electronic shutters within the time range of ps to ns. However, stray light from other sources still interferes with available signals, especially for low-frequency measurements.

Researchers around Andreas Ehn at Lund University have implemented a creative method to reduce stray light based on a spatial locking technique called periodic shadows. Although the concept of this measurement technique has been demonstrated before, Lund's researchers described in a recent paper that they "improved its feasibility, strength, and robustness" by implementing this method using fiber optic probes.

The experiment used a bundle of 19 optical fibers, which were arranged in a dense circular pattern on the signal collection side of the fiber, but in a linear pattern on the spectrometer side. Each fiber carrying the signal is followed by a dark fiber to generate appropriate fiber spacing along the entrance slit of the Isoplane SCT 320 spectrograph. The fiber pattern is approximated by a square wave function. At the exit of the spectrograph, use a fast gated PI-MAX4 ICCD camera to collect spectral images. The Isoplane spectrograph is an aberration correction system that can maintain high signal accuracy without distortion even in a large sensor area, which helps to reconstruct signals from collected images. The periodic structure of the analyzed signal is calculated column by column through Fourier transform, multiplication with the reference signal, and bandpass filter, which leads to a reduction in DC like offset like the stray light component on the detector.

The researchers further demonstrated the application of this technology in gas and premixed flame Raman spectroscopy. They not only indicate that the reconstructed signal provides a quantitative and accurate measurement of species mole fraction and temperature in the flame, but also that stray light is suppressed by almost two orders of magnitude (with a factor of 80). Their conclusion is that their concept is very valuable for accurate spectral measurements in experiments with limited optical channels.

Source: Sohu

Ähnliche Empfehlungen
  • Efficient implementation of laser welding automation using modern measurement technology

    Ensuring the integrity and quality of the welded hair clip is crucial in the assembly of electric motors. Usually, 160 to 220 hair clips are welded to each motor, and the accuracy of these welds directly affects the overall quality of the stator and motor. The traditional method of detecting these welds is difficult to balance the requirements of safety and accuracy, which often leads to damage to...

    2024-06-13
    Übersetzung anzeigen
  • Fraunhofer ISE develops a faster laser system for wafer processing

    By using a new type of laser, the processing speed of wafers can be 10 to 20 times faster than before. This is the result of a research project at the Fraunhofer Institute for Solar Systems in Germany.Researchers have developed a prototype that can use ultraviolet waves to carve the most intricate structures on silicon wafers. The new system concept enables solar cell manufacturers to perform lase...

    2023-12-23
    Übersetzung anzeigen
  • NSF funding for the world leading EP-OPAL laser multi mechanism design in Rochester

    The National Science Foundation (NSF) of the United States has awarded the University of Rochester nearly $18 million for three years to design and prototype key technologies for EP-OPAL, a new facility dedicated to studying the interaction between ultra-high intensity lasers and matter.After the design project is completed, the facility can be built at the Laser Energy Laboratory (LLE). This fund...

    2023-09-26
    Übersetzung anzeigen
  • Demonstrating broadband thermal imaging using superoptical technology in a new framework

    The research team used a new reverse design framework to demonstrate ultra optical broadband thermal imaging for applications ranging from consumer electronics to thermal sensing and night vision.The new framework, known as the "Modulation Transfer Function" project, solves the challenges related to broadband metaoptics by determining the functional relationship between image contrast and spatial ...

    2024-03-19
    Übersetzung anzeigen
  • Vast's Haven-1 program has become the world's first commercial space station equipped with SpaceX Starlink lasers

    Vast's Haven-1 program will become the world's first commercial space station, equipped with SpaceX's Starlink laser terminal, providing connections to its crew users, internal payload racks, external cameras, and instruments at speeds of gigabits per second and low latency.Max Haot, CEO of Vast, said: "If you need to provide high-speed, low latency, and continuous Internet connection on the orbit...

    2024-04-10
    Übersetzung anzeigen