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and Université Côte d'Azur. INPHYNI is a physics laboratory covering a broad range of research topics, with strong activities in fluid mechanics, soft matter physics, biophysics, microfluidics, and
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audio chains, and control software – optimized for the 1–20 kHz range and ideally extendable to 40 kHz. The device must be portable for installation in a neuroscience laboratory. 3. Acoustic
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ion-light interaction over tens to thousands of seconds, for an ultra-stable laser locked on solid-state frequency references at dilution temperatures. The goal is to reach maintain 1E-17 stability
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exhibit novel nonlinear behaviors, opening the way to the experimental observation of fundamental processes that have so far remained largely unexplored. Among the various approaches proposed to reach this
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interferometer's output. To increase the distance at which these events can be observed, the detectors' sensitivity must be improved. In the frequency range where the detector is most sensitive, around 100 Hz
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intrinsically disordered regions (IDRs) play essential roles in many biological processes. Unlike conventional proteins, they do not adopt a single stable structure but instead populate a wide range of
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devices, spintronics, and quantum photonics. This versatility stems from their unique physical properties, including a highly tunable bandgap, strong spin–orbit coupling, long carrier diffusion lengths, and
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. In this context, the possibility of ultra-fast optical characterizations in the mid-infrared range is an important research asset [3]. The goal of this project is to develop a degenerate pump-probe
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), the Institut National Polytechnique de Grenoble (Grenoble INP) and the University Grenoble-Alpes (UGA). LEGI carries out a wide range of research activities with a common ground: fluid mechanics and related
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of the century, which could be further amplified by a slowdown in the Atlantic Meridional Overturning Circulation (AMOC). This PhD is part of the French-Brazilian project AMACLIM (https://www.lsce.ipsl.fr/anr