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. The main research themes include the development of pump-probe measurement techniques and optical microscope using ultrashort pulse lasers and spin-resolved photoelectron spectroscopy at the Research
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III-V semiconductors. The group has well-equipped laboratories for quantum optics and high-resolution laser spectroscopy of quantum emitters at room and cryogenic temperatures, radio-frequency control
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high-speed imaging, particle image velocimetry (PIV), Fourier transform infrared spectroscopy (FTIR), and laser-based spectroscopy. Perform emission analyses using simulation software, such as ANSYS
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sciences from the field of solid state physics or materials research, knowledge of photoemission and/or other ultrafast spectroscopies, practical experience with high-power ultrafast lasers and assembly
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spectroscopy, lasers, nonlinear generation). • Strong experience in micro- and nanofabrication of III–V semiconductor–based devices. • Good command of written and spoken English. • Strong writing skills (report
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ice environments under controlled laboratory conditions, using advanced radiation sources including synchrotrons, lasers, and hydrogen lamps. • Involvement in a cutting-edge ERC-funded research project
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. Possible contribution to the supervision of Master and PhD students. Communication of results in high-impact scientific journals and international conferences. Laser frequency stabilization onto atomic vapor
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Department. Current research areas include mathematical physics, biological physics, cold atoms, condensed and soft matter physics, gravitation, spectroscopy, micro/nano photonic materials and devices, quantum
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precision gas measurement company based in Oxfordshire, leveraging unique technology originally developed by RALSpace. We provide state-of-the-art laser spectroscopy solutions to accurately quantify and
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; interest in experimental condensed matter research hands-on expertise in THz spectroscopy, operation of optical setups at free-electron-laser facilities expertise in time-resolved spectroscopy of van der