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L’Institut de Physique et Chimie des Matériaux de Strasbourg (IPCMS), UMR 7504 CNRS – Université de Strasbourg, | Strasbourg, Alsace | France | 12 days ago
science fiction today, it can be become reality soon, by replacing electrical computing with optical computing. To make this happen the photonic processors must be realized. The building blocks
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the work realized by Alain Aspect on entangled photon pairs more than 40 years ago. Here we propose to exploit the specific quantum nature of single photons and photon pairs for enhancing fluorimetric
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reduces the efficiency of the photonic devices made using GeSn. This prevents a wide scale adoption of GeSn photonics in favor of conventional, yet expensive III-V and II-VI semiconductor technologies
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dedicated to the study of interactions between the spin of a single carrier in a semiconductor quantum dot and single photons. These spin-photon interfaces, when efficient, can enable key operations
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27 Mar 2024 Job Information Organisation/Company CNRS Department Institut des Neurosciences Cellulaires et Intégratives Research Field Neurosciences Biological sciences Researcher Profile First Stage Researcher (R1) Country France Application Deadline 16 Apr 2024 - 23:59 (UTC) Type of...
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between the CNRS, the University of Paris-Saclay and the University of Paris Cité located in Palaiseau, near Paris. The laboratory carries out world-renowned research projects in the fields of photonics
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in foods for ensuring safety and quality. The use of sensors in security and defence is also growing, with applications in areas such as explosives detection and bioterrorism. The photonic sensor
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within the Optics and Photonics team of the Electronics and Physics Department (EPh). The team research activities are focused on photonic technologies for high-performance computing and data processing
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control methods regarding micro-photonics waveguide arrays. Building upon the analogy between the temporal evolution of a quantum system and the propagation of light in a network of coupled waveguides, we
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highly complementary activities on opto-electro-mechanics in 2D materials, 2D magnetic materials (magno-opto-mechanics), atomic-scale photonics and magnetism. We interact with several of the laboratory's