Italiano

TRUMPF plans to upgrade laser technology with quantum computing

17
2025-11-25 16:08:26
Vedi traduzione

Recently, multiple research institutions in Germany, including the high-tech company TRUMPF, the Fraunhofer Institute for Laser Technology (ILT), and the Durham Center for Complex Quantum Systems at the Physics Department of the Free University of Berlin, are using quantum algorithms to explore the fundamental principles of laser physics. Its long-term goal is to significantly accelerate the development of new lasers through the use of quantum computers.

 



“If we understand the physical processes involved in generating and amplifying laser light more precisely, we will be able to make our products even more efficient and increase their performance in the future,” says Daniel Basilewitsch, responsible for the project at TRUMPF.

The central question is whether quantum computers can simulate the complex quantum mechanical processes that take place in lasers better than the conventional high-performance computers that TRUMPF has used to date.

Focus on CO₂ lasers and semiconductor lasers

The project partners are focusing their research on CO₂ lasers and semiconductor lasers.

“In addition to their use in data transmission, in sensor technology in smartphones, and in the future in autonomous driving, semiconductor lasers are the backbone of most industrial laser applications, either as a pump source or in direct application. The impact of better prediction of amplification properties using quantum algorithms can be correspondingly large. The goal is to use quantum computers to calculate the quantum mechanical processes in semiconductor lasers,” says Prof. Carlo Holly, head of the Data Science and Measurement Technology department at Fraunhofer ILT and head of the RWTH Aachen University Chair of Optical Systems Technology.

However, it will still be some time before quantum computers can be widely used in industry. Although the first prototypes already exist, they are currently still unsuitable for complex industrial tasks. “Nevertheless, it is important to build up the expertise today so that quantum computers can be used in industry in the future,” says Basilewitsch.

The project partners contribute their respective expertise

Fraunhofer ILT is a leader in the simulation of semiconductor lasers, while the Dahlem Center for Complex Quantum Systems is a leader in the modeling of molecular collisions. TRUMPF is developing the first quantum algorithms and coordinating the project. The German Federal Ministry of Education and Research is funding the project with around 1.8 million euros as part of its “Application-Oriented Quantum Informatics” funding program.

First, the researchers are analyzing existing simulation approaches and testing initial quantum algorithms.

“The core of the project is the translation of the physical modeling of the desired and undesired energy transfer processes occurring in the CO₂ laser from classical to quantum computers. A better understanding of these processes will then serve to optimize the laser design,” explains Prof. Dr. Christiane Koch from the Freie Universität Berlin.

“The project is an important step toward making energy-intensive chip production more sustainable, where our CO₂ lasers are used today,” adds Basilewitsch.

Source: EE Journal

Raccomandazioni correlate
  • Artificial intelligence accelerates the process design of 3D printing of metal alloys

    In order to successfully 3D print metal parts to meet the strict specifications required by many industries, it is necessary to optimize process parameters, including printing speed, laser power, and layer thickness of deposited materials.However, in order to develop additive manufacturing process diagrams that ensure these optimal results, researchers have to rely on traditional methods, such as ...

    2024-02-27
    Vedi traduzione
  • The LANL Laboratory in the United States has achieved a light source that generates a circularly polarized single photon stream using a quantum light emitter

    Los Alamos National Laboratory (LANL) has developed a method for a quantum light emitter that stacks two different atomically thin materials together to achieve a light source that produces a stream of circularly polarized single photons. These light sources can in turn be used for a variety of quantum information and communication applications.According to Los Alamos researcher Han Htoon, the wor...

    2023-09-02
    Vedi traduzione
  • Unsupervised physical neural network empowers stacked imaging denoising algorithm

    In view of the reconstruction problem of stack imaging technology in noisy environment, Lin Nan's team from Shanghai Institute of Optics and Mechanics, Chinese Academy of Sciences, proposed an innovative method ProPtyNet based on unsupervised physical neural network, which is expected to be applied to chip CD measurement and defect detection. The article was published in Optics and lasers in engin...

    03-25
    Vedi traduzione
  • LM GROUP USA expands its North American office

    Recently, BLM GROUP USA, a leading manufacturer of laser tube and sheet metal processing equipment, announced that its North American headquarters in Novi, Michigan has officially started construction, with plans to add 65000 square feet of modern facilities. It is expected to be completed and put into use in the third quarter of 2025.The specific investment amount for this expansion has not been ...

    2024-08-03
    Vedi traduzione
  • BenQ Launches V5000i 4K RGB Laser TV Projector

    Display solution brand BenQ recently launched the 4K RGB laser TV projector V5000i.The V5000i focuses on providing the pinnacle of innovation, unparalleled color accuracy, and excellent audio quality, elevating the home theater world to unprecedented heights. It is the perfect replacement for large screen televisions, particularly suitable for well lit spaces such as spacious living areas, "the co...

    2023-10-10
    Vedi traduzione