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image reconstruction. Your research will focus on creating a new generation of ultrasound imaging systems that combine multiple distributed transducers into a coherent imaging platform. You will develop
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technologies for imaging the living human inner ear. This project combines biomedical optics, optical coherence tomography (OCT), ultrafast lasers, image-guided surgery, and otology to address one of the most
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(or similar): Coherent diffractive imaging, especially ptychography. Sparse sensing, optimization, or Bayesian experimental design. Machine learning for imaging. Synchrotron experiment experience. Semiconductor
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(or similar): Coherent diffractive imaging, especially ptychography. Sparse sensing, optimization, or Bayesian experimental design. Machine learning for imaging. Synchrotron experiment experience. Semiconductor
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modality. Excellent written and oral communication skills in English. We also value applications from people with the following experience (or similar): Coherent diffractive imaging, especially ptychography
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practical methodology for designing and implementing adaptation solutions that are coherent, inclusive, and time bound. Eight ambitious LRAs across diverse European geographies, including all three EUCRA
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experimental fluid mechanics, particularly in optical flow-visualization techniques. The successful candidate will conduct advanced laboratory experiments to study the dynamics of gas coherent structures and the
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(Rietveld refinement and PDF analysis), of Dr. Marie-Ingrid Richard’s group at CEA Grenoble, experts in Bragg Coherent Diffraction Imaging (BCDI) and of Dr. Frédéric Maillard group at LEPMI, which is
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systems that combine multiple distributed transducers into a coherent imaging platform. You will develop novel methods for multi-aperture ultrasound acquisition, ultrasound-based probe localisation, and
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dynamics of elementary excitations in matter with nanometer spatial and femtosecond temporal resolution. We have pioneered many nano-optical imaging techniques from ultrafast nano-imaging with coherent and