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He discovered X-ray magnetic dichroism and proposed the well-known orbital magnetisation sum rule, methods that are now used at every synchrotron around the world and which support the fundamental basis for the development of next-generation computing systems.
Although it was originally thought to be an effect too small to observe, Prof van der Laan discovered that X-rays can be used to measure magnetic materials – first via theoretical predictions, swiftly followed by experimental proof. The technique is now known as X-ray magnetic circular dichroism (XMCD), and it has become mainstream in physics and materials science.
Although it was originally thought to be an effect too small to observe, Prof van der Laan discovered that X-rays can be used to measure magnetic materials – first via theoretical predictions, swiftly followed by experimental proof. The technique is now known as X-ray magnetic circular dichroism (XMCD), and it has become mainstream in physics and materials science.
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G. Awana, R. Fujita, A. Frisk,P. Chen, Q. Yao,A. J. Caruana,C. J. Kinane,N-J Steinke,S. Langridge, P. Olalde-Velasco,S. S. Dhesi,G. van der Laan,
Q. Yao,Y.Z. Liu, Y. Gang, D.M. Burn,X.M. Wang,A.A. Haghighirad, F. Kou,G.Q. Yu,G. van der Laan, T. Hesjedal, S.L. Zhang
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