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Field
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Python or similar languages Knowledge of quantum optics measurements such as photon correlation functions or photon-number-resolved detection Familiarity with aspects of condensed matter and BCS
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variety of quantum platforms: Circuit QED and quantum optics of superconducting circuits Rydberg atom array quantum processors and quantum simulators Trapped-ion systems (qubits and oscillator modes
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(Berry curvature, quantum metric) and experimentally observable high-bias transport and optical signatures in moiré systems, including the study of electronic criticalities. Main tasks and responsibilities
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18 Sep 2026 Job Information Organisation/Company University of Jyväskylä Research Field Physics » Computational physics Physics » Condensed matter properties Physics » Quantum mechanics Physics
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experiments to meet the project goals. The post holder will be expected to be familiar with excitons and solid-state quantum systems, have experience working in quantum optics, quantum technologies, atomic
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. We are a dynamic and international team of ten researchers including postdocs and PhD students. The group has well-equipped laboratories for quantum optics with state-of-the-art equipment such as
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at TU/e and will work very closely with industrial partners. You will be embedded in the Quantum & Terahertz Systems (QTS) team within the Electro-Optical Communications (ECO) group of the Department
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The Quantum Materials group at Argonne National Laboratory, in collaboration with the Argonne Quantum Foundry, a key component of Q-NEXT, seeks a highly motivated postdoctoral candidate to spearhead
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for next-generation information processing, microelectronics, wireless communication, and quantum information science. Key Responsibilities: Develop terahertz coplanar resonators, including design
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of the complex III-V semiconductor stack forming the laser and transferred onto a 300 mm substrate by molecular bonding. A simplified example of the laser structure is: InP (4 µm) / GaAlInAs quantum wells (400 nm