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-temperature quantum devices; spintronics, quantum sensing and metrology, including position, navigation and timing technologies; and quantum networks and communications. Also of interest are new approaches
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fast, efficient, and versatile reconfigurable thermal landscapes controlled by light polarisation, power and illumination patterns (https://dx.doi.org/10.1039/C9NR01628G, https://doi.org/10.1103
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Ciência e a Tecnologia, I.P. MONTLY RENUMERATION The value of the grant is defined by the Fundação para a Ciencia e Tecnologia, in https://www.fct.pt/wp-content/uploads/2025/02/Tabela_valores_SMM_2025.pdf
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Matter and Quantum Information Theory The areas of research range from strongly correlated Fermions and Bosons in and out of equilibrium, gauge theories, spintronics, frustrated systems and topological
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scientists within Germany and worldwide (https://www.physik.fu-berlin.de/forschung/dahlem-center-for-complexquantum-systems/index.html ). The research focus of the Dahlem Center is quantum theoretical solid
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the Division of Condensed Matter Theory (https://www.pks.mpg.de/condensed-matter ) range from strongly correlated Fermions and Bosons, spintronics, quantum dynamics in and out of equilibrium, via topological
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and enhancing the performance of semiconductor nanomaterials across diverse applications in optoelectronics, spintronics, energy conversion, photocatalysis as well as biosensor technologies. Yet
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spintronics, within the framework of the ANR MoxSpin project. [1] T. S. Seifert et al., Appl. Phys. Lett. 120, 180401 (2022). [2] T. Moriyasu et al., in Ultrafast Phenomena XIX, edited by K. Yamanouchi et al
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Position in the Graduate School of Engineering, Osaka University https://www.eng.osaka-u.ac.jp/en/topics/offering/27721/ [Work content and job description] “Nanomaterials Area” pioneers novel materials by
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for applications in THz photonics, including the development of novel emitters, detectors and modulators of broadband THz radiation. https://www.physik.fu-berlin.de/en/einrichtungen/ag/ag-kampfrath