Ελληνικά

Fraunhofer IZM launches quantum cascade project to develop modular laser system

36
2025-07-30 11:17:54
Δείτε τη μετάφραση

Creating new laser systems for use in spectroscopy applications is a challenging and costly endeavor. In order to give even small and medium-sized enterprises access to such innovative technology, the Fraunhofer Institute for Reliability and Microintegration (IZM) co-launched the QuantumCascade project to develop a modular laser system for a range of multispectral analytics.
This week the IZM reported on the project, which ran from 2022-2025. IZM stated, “Infrared spectroscopy has many uses in a vast range of applications, from geosciences to medical technology or even waste management and recycling. Spectroscopic analytics have become far more precise over the last two decades, and far more complex over the same period.

 



Demonstration unit created in the QuantumCascade project


“Current devices use light at different wavelengths for a range of multispectral tests, but they have become bulky and stationary. Putting their capabilities into the original handheld form factor would allow sophisticated analytics out in the field, but designing and miniaturizing the technology to do this is a resource and know-how-intensive feat,” the statement added.

‘Versatile and reliable source for spectroscopy’

This is where the QuantumCascade project enters the picture. Successful development of a modular and powerful laser system, integrated on a glass board, would bring down the R&D effort needed to develop innovative devices and give makers access to a versatile and reliable light source for spectroscopy.

Quantum cascade lasers (QCLs) operate at wavelengths between 2 µm and 15 µm, in the medium infrared (MIR) range. QuantumCascade combines up to three QCLs that can be programmed to emit pulses as short as 5 ns, which are particularly crucial for spectroscopic analytics with organic substances.

Alongside the lasers themselves, the design includes embedded laser drivers that were developed in partnership with Laser Electronics LE GmbH, and integrated optical beamforming using aspherical optics and coupling to special MIR fibers. The novel design places each QCL inside its own cavity in the glass. The temperature in each can be stabilized separately, which means that the lasers can be operated each at the right temperature and, by implication, the right wavelength.

The electronic drivers and control circuits in the design are mounted by industrial soldering processes on a thin-film metallized glass board. Selective laser etching is used to structure this glass board with µm accuracy – so that optical components can be mounted directly. The solution is highly integrated, which makes it possible to encapsulate the entire system – for operation in harsh environments or to get cleaned for use in medical applications.

When working on the laser system, the researchers could draw on the insights won in the prior PhotMan project’s work on a versatile fiber-optical sensor system. QuantumCascade is the next step in the evolution of a thin-glass platform developed at IZM that integrates and couples optical and electronic components efficiently.

Source: optics.org

Σχετικές προτάσεις
  • Oxford University Tokamak Energy Company develops laser technology for fusion power plants

    Tokamak Energy is currently developing a new laser measurement technology for controlling extreme conditions inside fusion power plants.The laser based dispersion interferometer system is being tested at the company's headquarters in Oxford and will be installed on its world record breaking fusion machine ST40 later this year.Clean, safe, and renewable nuclear fusion power generation occurs inside...

    2024-03-14
    Δείτε τη μετάφραση
  • Developing miniaturized laser technology: This company has secured $5 million in financing

    Recently, high-performance laser supplier Skylark Lasers announced that it has raised $5 million in investment to further advance its efforts in miniaturized laser technology.Skylark Lasers is established at the center of the Scottish Photonics Cluster, focusing on the design and production of compact diode pumped solid-state (C-DPSS) lasers with the purest spectral characteristics, providing high...

    2023-11-02
    Δείτε τη μετάφραση
  • Scientists have made breakthrough progress in using laser to cool sound waves

    A group of researchers from the Max Planck Institute of Optoelectronics has made a significant breakthrough in using laser cooling to travel sound waves. This development brings us one step closer to the quantum ground state of sound in waveguides, which is of great significance for quantum communication systems and future quantum technology.By using laser cooling, scientists can significantly red...

    2024-01-22
    Δείτε τη μετάφραση
  • MKS Instruments announces full year 2024 financial report

    Recently, MKS Instruments released its Q4 and full year financial results for 2024. According to the report, MKS's revenue for the fourth quarter of 2024 reached $935 million, a year-on-year increase of 4.7%, with a GAAP net income of $90 million; In 2024, the annual revenue was nearly 3.6 billion US dollars, a year-on-year decrease of 0.9%. GAAP net revenue was 190 million US dollars, turning los...

    02-20
    Δείτε τη μετάφραση
  • Northeastern University of Japan: Breakthrough Laser Technology for Nanoscale Laser Processing

    In the fields of optics and micro/nano processing, precise manipulation of lasers to meet the growing demand for miniaturization is an important challenge in driving the development of modern electronic and biomedical equipment. Recently, researchers from Tohoku University in Japan successfully demonstrated the use of interference technology to enhance the longitudinal electric field of radially p...

    2024-04-12
    Δείτε τη μετάφραση