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optical spectroscopy, including measurements as a function of temperature, oxygen concentration, and pH. Calibration of the materials as sensors to measure temperature, oxygen, and pH values in cells
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carried out at ISOM-UPM, but in close collaboration with the project partners that will provide state of the art transmission electron microscopy (IMEYMAT-UCA) and quantum nano-optics simulation and
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simulations of the proposed functionalities, including the waveguide ability to detect the presence of analytes. These sensing capabilities will be explored through both optical absorption mechanisms and phase
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computers and, as a result, many of them remain poorly understood. UItracold atoms trapped in optical lattices provide a pristine realization of the Hubbard model and hold the promise of solving many of its
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. For further details on the clinical trial, please refer to the following link: https://pubmed.ncbi.nlm.nih.gov/34665780/ . Candidates must be highly motivated and able to work effectively in a strongly
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carried out at ISOM-UPM, but in close collaboration with the project partners that will provide state of the art transmission electron microscopy (IMEYMAT-UCA) and quantum nano-optics simulation and
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, Physics , quant-ph , Quantum Science + Quantum Information Science + Quantum Optics + Theoretical Physics , Quantum Sensors , Theoretical Particle Physics , Theoretical Physics, HEP-Phenomenology (hep-ph
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. The successful candidate will be joining the Optoelectronics group led by Prof. Dr. Valerio Pruneri. The successful candidate will be responsible for various tasks related to the simulation, planning, development