High Temperature Superconductor (HTS) is identified as the potential “game changer” for reducing fusion device size by increasing the allowable magnetic field, current density, and operating temperature. The use of high performance, large-bore HTS magnets for higher fusion power density is necessary both to improve the magnet efficiency and to increase integrated system performance in a compact fusion power plant design concept. The Princeton Plasma Physics Laboratory (PPPL) seeks a HTS Research Scientist to lead the design, development, commissioning, integration, and new HTS technology development of a reel to reel coated conductor inspection system, as a necessary quality control tool to close a critical R&D gap in maturing HTS for commercial fusion applications. The successful candidate will develop and mature a novel design of a high field, compact scanning system for low temperature, in field HTS critical current measurements of a broad range of commercial HTS tapes with high resolution Hall sensor array system operated in a liquid cryogen free cooling system, and will use these Ic measurement data to develop a quantitative understanding of origin and distribution of HTS intrinsic defects, critical current Ic dropouts, and any other nonuniformities observed in the tape operated in a compact fusion pilot plant-relevant environment. This is a unique opportunity to build a first-of-a-kind compact and portable HTS inspection capability and contribute directly to the U.S. National HTS tape inspection standard and fusion S&T roadmap missions of commercial fusion. The position is based at PPPL (Princeton, NJ) and will require close collaboration with our US industrial partners. To design, develop, commission, and scientifically exploit the REBCO coated conductor in-field scanning system on a number of commercial tapes, providing the high-resolution critical current measurements of commercial HTS tapes in an fusion pilot plant (FPP)-relevant high field HTS magnet operating environment. The Staff Research Scientist will integrate and validate a new compact reel to reel coated conductor inspection system with Hall sensor array system to obtain low temperature in field (20K, 10 T) critical current mapping of commercial tape from a few meters to a few hundred meters, and will lead the studies that build a quantitative understanding of Ic nonuniformity as a result of intrinsic defects, Ic dropouts from coated conductor manufacturers—including PLD and MOCVD and their role in setting the defect distribution and overall tape performance at 20K, 10-20 T. These measurements will validate and improve reliability, consistency in the coated conductor fabrication which is critical to mature HTS for large scale deployment in future commercial fusion pilot plants. A U.S. Department of Energy National Laboratory managed by Princeton University, the Princeton Plasma Physics Laboratory (PPPL) is tackling the world’s toughest science and technology challenges using plasma, the fourth state of matter. With more than 70 years of history, PPPL is a leader in the science and engineering behind the development of fusion energy, a potentially limitless energy source. PPPL is also using its expertise to advance research in the areas of microelectronics, quantum sensors and devices, and sustainability sciences. Whether it be through science, engineering, technology or professional services, every team member has an opportunity to contribute to our mission and vision. Come join us!
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Job Type
Full-time
Career Level
Senior
Education Level
Ph.D. or professional degree