The Max Planck Institute of Quantum Optics (MPQ) in Garching, near Munich, has its origins in a laser research project group founded in 1976. With four departments in different areas of laser development and quantum physics, the institute researches the interaction of light with quantum matter at extremely low temperatures.
The laboratories use complex, high-precision equipment built with the support of an in-house workshop. Fifteen engineers manufacture precision components on DMG Mori machine tools. The machine shop includes three of the manufacturer’s 5-axis machining centres, a DMU 50 and a DMU 65 monoBLOCK plus, most recently in December 2023, a DMU 40. There is also a CLX 450 on-site for CNC turning.
Research at MPQ provides physicists with ever deeper insights into physics at atomic scale. The results are so groundbreaking that two Nobel Prizes in Physics have been awarded to Garching employees. The first went in 2005 to Professor Theodor W Hänsch for the development of laser-based precision spectroscopy. The technology can be used to determine with extreme precision the colour of light from atoms and molecules. In this way, frequencies can be measured with an uncertainty of a few millionths of a billionth of a hertz.
The second Nobel Prize was awarded in 2023 to Professor Ferenc Krausz. He and his team succeeded in isolating a single X-ray pulse having a duration of 650 attoseconds. (An attosecond is one second times 10−18, corresponding to the ratio of one second to the age of the universe). The interaction of electrons in matter with each other or with light takes place on this unimaginably small timescale. It therefore requires extremely short exposure times to observe and control electrons in real time.
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