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Associate / PhD Student (m/f/x) Ultrafast detection of THz-controlled light emitters in quantum matter (subject to personal qualification employees are remunerated according to salary group E 13 TV-L
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). Selection process Please see the pdf ad Website for additional job details https://odin.c2n.universite-paris-saclay.fr/en/activities/mir-thz-devices/ http://www.mir-thz-devices.u-psud.fr/Publications
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fabrication of microwave, millimeter-wave, and terahertz circuits and systems, covering frequency ranges from GHz to THz. Areas of interest include, but are not limited to, active and passive circuit design
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spectrum candidates beyond the current 5G NR range, including FR3 (7–24 GHz) and the THz band (100 GHz and above). The PDA will be jointly supervised by Qurrat-Ul-Ain Nadeem, Marwa Chafii and Murat Uysal
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) Ultrafast detection of THz-controlled light emitters in quantum matter (subject to personal qualification employees are remunerated according to salary group E 13 TV-L) starting February 1, 2026. The position
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postdoctoral researcher, within the THz-Photonics group at the IEMN laboratory. The group has long-standing experience in the design and fabrication of optoelectronic devices spanning the THz to MIR ranges, and
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on untapped potential of THz and optical wavelengths alongside existing radio technologies. This PhD position focuses on Dynamic Network Architectures and Control for Tropospheric and Cell-Free Networks. You
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shift from microwaves to mm-waves (ca. 30 – 300 GHz) or even Terahertz frequencies (ca. 0.3 – 1 THz). Current on-chip interconnect technology relies on printed circuit board (PCB), which is not suitable
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the development of RF testbeds for sub-6 GHz, cmWave, mmWave, and THz bands, and ensuring seamless integration with OWC testbeds to enable omni-band experimentatio The RS is expected to disseminate results through
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-Doctoral Associate (PDA) to engage in cutting-edge research on channel modeling and characterization for communication and sensing in emerging spectrum for 6G and beyond, with a focus on the FR3, THz and